#EV Continuously Variable Transmission Market
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infinityinsights · 2 years ago
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profoundglitterkoala · 1 month ago
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Hybrid Car Models Globe Market - A Post On Your Choices
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Why the 2024 Toyota Corolla Hybrid Is the Top Fuel-Efficient Choice for Westminster Drivers
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For Westminster drivers looking for the perfect blend of fuel efficiency, comfort, and reliability, the 2024 Toyota Corolla Hybrid stands out as an exceptional choice. At Beach Cities Toyota, we know our customers value a car that saves money, provides a smooth driving experience, and offers the best features for daily commutes. The 2024 Corolla Hybrid delivers all of this and more, making it the go-to option for eco-conscious and comfort-loving drivers in Westminster. In this blog, we'll explore the key reasons why the 2024 Corolla Hybrid is the ideal car for Westminster residents.
1. Unmatched Fuel Efficiency
One of the most attractive features of the 2024 Toyota Corolla Hybrid is its impressive fuel efficiency. With rising fuel prices and increased awareness about environmental sustainability, Westminster drivers are prioritizing vehicles that can help them save on gas. The Corolla Hybrid achieves a remarkable combined fuel economy of up to 52 miles per gallon (mpg), making it one of the most fuel-efficient vehicles on the market today.
This incredible efficiency is made possible by the Corolla Hybrid's advanced powertrain, which combines a 1.8-liter 4-cylinder gasoline engine with an electric motor. The hybrid system is designed to seamlessly transition between electric and gasoline power, optimizing energy use and reducing fuel consumption. Whether you're driving through city streets or cruising on the highway, the Corolla Hybrid works to deliver maximum fuel efficiency without compromising on performance.
For Westminster drivers, this means fewer trips to the gas station and more savings over time. The Corolla Hybrid is perfect for daily commutes, running errands, or weekend adventures, all while keeping fuel costs low.
2. Environmentally Friendly Driving
The 2024 Corolla Hybrid is not only fuel-efficient but also environmentally friendly. By combining electric power with a gasoline engine, the Corolla Hybrid produces lower greenhouse gas emissions compared to traditional gas-powered vehicles. This makes it an excellent choice for drivers who want to reduce their carbon footprint and contribute to a cleaner environment in Westminster.
The Corolla Hybrid's EV Mode allows the car to operate solely on electric power for short distances, such as when driving at low speeds or in stop-and-go traffic. This feature is especially useful for city driving and helps reduce emissions even further. By choosing the 2024 Corolla Hybrid, you're making a positive impact on the environment while still enjoying the convenience and reliability of a Toyota.
3. Smooth and Comfortable Ride
Comfort is a top priority for many drivers, and the 2024 Toyota Corolla Hybrid delivers a smooth and enjoyable driving experience. The hybrid powertrain provides a quiet and responsive ride, while the Continuously Variable Transmission (CVT) ensures seamless acceleration. The transition between electric and gasoline power is nearly imperceptible, allowing for a refined and comfortable drive, whether you're navigating busy Westminster streets or cruising on the open highway.
The Corolla Hybrid's suspension system is designed to absorb bumps and uneven road surfaces, providing a comfortable ride for both the driver and passengers. This is especially important for Westminster drivers who may encounter varying road conditions during their daily commutes. The electric power-assisted steering offers precise control, making the Corolla Hybrid easy to maneuver in tight spaces and city traffic.
4. Advanced Technology for Convenience and Efficiency
The 2024 Toyota Corolla Hybrid is equipped with advanced technology features that enhance the driving experience and help you stay connected on the road. The 7-inch digital instrument cluster provides real-time information about your fuel consumption, battery charge level, and driving mode, allowing you to monitor your efficiency at a glance. This helps drivers make informed decisions to further improve fuel economy.
The Corolla Hybrid also comes with a user-friendly 8-inch touchscreen infotainment system, which is compatible with Apple CarPlay® and Android Auto™. This allows you to easily connect your smartphone, access your favorite apps, and use navigation tools—all while keeping your focus on the road. The available Qi-compatible wireless charging pad ensures that your devices stay charged and ready for use, making it perfect for busy Westminster drivers on the go.
5. Safety Features for Peace of Mind
Safety is a key consideration for any vehicle, and the 2024 Toyota Corolla Hybrid comes equipped with Toyota Safety Sense™ 3.0 (TSS 3.0), a suite of advanced safety features designed to keep you and your passengers safe on the road. The TSS 3.0 package includes:
Pre-Collision System with Pedestrian Detection: This system uses sensors to detect potential collisions with vehicles or pedestrians and provides an audio/visual alert. If necessary, it can apply automatic braking to help avoid or mitigate a collision.
Lane Departure Alert with Steering Assist: If the system detects that you are unintentionally drifting out of your lane, it will provide a warning and gently steer the vehicle back into the lane if needed.
Dynamic Radar Cruise Control: This feature helps maintain a set distance between you and the vehicle in front, making highway driving more comfortable and less stressful.
Road Sign Assist: This feature detects and displays road signs such as speed limits, stop signs, and yield signs, helping you stay informed and drive safely.
These safety features are especially valuable for Westminster drivers who often face heavy traffic and busy intersections. The 2024 Corolla Hybrid provides an extra layer of protection, ensuring that you and your loved ones stay safe on every journey.
6. Spacious and Well-Appointed Interior
The 2024 Toyota Corolla Hybrid offers a spacious and comfortable interior, making it an excellent choice for daily commutes and longer drives alike. The seating is designed for both comfort and support, with available SofTex®-trimmed seats providing a premium feel. The rear seats offer ample legroom, ensuring that passengers are comfortable, even on longer trips.
The Corolla Hybrid's interior is thoughtfully designed to provide a balance of practicality and style. The 60/40 split-folding rear seats allow you to create additional cargo space when needed, making it easy to carry groceries, sports equipment, or luggage for a weekend getaway. The Smart Key System with Push Button Start adds convenience, allowing you to start the car without fumbling for your keys.
7. Sleek and Modern Exterior Design
The 2024 Toyota Corolla Hybrid features a sleek and modern exterior design that stands out on Westminster roads. With its bold lines, aggressive front grille, and available LED headlights and taillights, the Corolla Hybrid makes a statement wherever it goes. The 16-inch alloy wheels add a touch of sophistication, while the aerodynamic design contributes to the vehicle's impressive fuel efficiency.
The Corolla Hybrid is available in a range of stylish colors, allowing you to choose a look that matches your personal style. At Beach Cities Toyota, we know that Westminster drivers want a vehicle that not only performs well but also looks great—and the Corolla Hybrid delivers on both fronts.
8. Reliability and Low Cost of Ownership
Toyota has long been known for building reliable and durable vehicles, and the 2024 Corolla Hybrid is no exception. With regular maintenance, the Corolla Hybrid is designed to provide years of trouble-free driving, making it an excellent long-term investment. In addition to its reliability, the Corolla Hybrid also offers a low cost of ownership. Its excellent fuel economy, reduced emissions, and minimal maintenance needs help you save money over the life of the vehicle.
At Beach Cities Toyota, we offer a range of financing options and incentives to help you get behind the wheel of a Corolla Hybrid, making it easier than ever to enjoy the benefits of this fuel-efficient and eco-friendly vehicle.
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Conclusion: The Ideal Choice for Westminster Drivers
The 2024 Toyota Corolla Hybrid is the perfect choice for Westminster drivers who value fuel efficiency, comfort, and advanced technology. With its impressive fuel economy, environmentally friendly design, smooth driving experience, and top-notch safety features, the Corolla Hybrid offers everything you need for a reliable and enjoyable drive.
At Beach Cities Toyota, we're proud to offer the 2024 Toyota Corolla Hybrid to our customers in Westminster. If you're looking for a vehicle that saves you money on fuel, provides a comfortable driving experience, and helps reduce your environmental impact, the Corolla Hybrid is the ultimate choice. Visit us today to take a test drive and experience the 2024 Toyota Corolla Hybrid for yourself.
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marketresearch99 · 9 months ago
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Innovation in Motion: Advancements Powering Solenoid Performance and Reliability
In the realm of automotive engineering, where precision, reliability, and efficiency are paramount, automotive solenoids stand out as essential components powering various vehicle systems. From engine control and transmission regulation to fuel injection and emission control, automotive solenoids play a crucial role in ensuring smooth operation and optimal performance. As we journey into 2024, the Automotive Solenoid Market continues to witness significant growth, driven by factors such as technological advancements, electrification trends, and the increasing integration of advanced driver assistance systems (ADAS). This article delves into the key trends, market dynamics, and factors shaping the Automotive Solenoid Market in the coming years.
Market Overview:
The Automotive Solenoid Market is experiencing robust growth, with a projected Compound Annual Growth Rate (CAGR) exceeding 6% from 2022 to 2024. This growth is fueled by factors such as the increasing demand for fuel-efficient vehicles, advancements in electric vehicle (EV) technology, and the integration of solenoid-based systems in next-generation automotive platforms.
Key Factors Driving Growth:
Electrification of Automotive Systems: The shift towards electrification in the automotive industry drives the demand for solenoids in electric and hybrid vehicles. Solenoids play a vital role in controlling various electric systems such as electric power steering (EPS), electric parking brakes (EPB), and electrically actuated valves, contributing to improved vehicle performance and efficiency.
Advancements in Transmission Systems: Technological advancements in automotive transmissions, including automated manual transmissions (AMTs), dual-clutch transmissions (DCTs), and continuously variable transmissions (CVTs), drive the demand for solenoids for precise control of gear shifting, clutch engagement, and torque modulation.
Integration of Advanced Driver Assistance Systems (ADAS): The increasing adoption of ADAS features such as adaptive cruise control, lane departure warning, and automatic emergency braking requires solenoids for actuating various functions such as throttle control, brake modulation, and steering assistance, enhancing vehicle safety and driver comfort.
Focus on Fuel Efficiency and Emissions Reduction: Stringent fuel efficiency and emission regulations worldwide drive the demand for solenoids in engine management and emission control systems. Solenoid-based systems such as variable valve timing (VVT), exhaust gas recirculation (EGR), and wastegate control optimize engine performance, reduce fuel consumption, and minimize harmful emissions.
Challenges and Opportunities:
While the Automotive Solenoid Market presents significant growth opportunities, challenges such as increased competition, pricing pressures, and supply chain disruptions remain. However, these challenges also create opportunities for industry players to innovate, develop compact and energy-efficient solenoid solutions, and expand into emerging markets such as electric and autonomous vehicles.
For More Info@ https://www.gmiresearch.com/report/automotive-solenoid-market/
Conclusion:
In 2024, the Automotive Solenoid Market stands at the forefront of automotive innovation, powering the vehicles of today and shaping the mobility solutions of tomorrow. As automotive manufacturers continue to prioritize efficiency, performance, and safety, the market's growth is not just about solenoids; it is about driving electrification, automation, and sustainability in the automotive industry. The Automotive Solenoid Market is not merely a segment of automotive components; it is a catalyst for technological advancement and automotive evolution. In embracing the opportunities presented by electrification trends, advancements in transmission technology, and the integration of ADAS features, the Automotive Solenoid Market is not just actuating functions; it is electrifying innovation, driving progress and efficiency in vehicles for the modern era and beyond.
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rashaanayah · 9 months ago
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Renewable Energy Trends In 2024 - A List by Rasha Anayah (JHU)
Rasha Anayah
Renewable Energy Trends In 2024 - A List by Rasha Anayah (JHU)
Renewable energy is on a promising course to see rapid expansion by 2024 despite numerous challenges. Historic investments, competitiveness, and demand support its rapid development; however, grid and supply chain restrictions impede its expansion.
Carbon utilization technologies and other carbon-related innovations are increasingly emerging as viable drop-in replacements for fossil fuels, including sustainable aviation fuel and next-generation marine fuels.
Rising Consumer Awareness and Demand
As nations attempt to ensure energy security while transitioning away from fossil fuels, energy markets are in transition. This trend is accelerating rapidly, with new sources and markets emerging as solutions for global climate change. While the energy industry faces many hurdles, such as cost pressures, grid constraints, and labor issues, renewables appear set for significant growth by 2024.  
Rasha Anayah (JHU) makes it clear that consumer preferences will continue to shape the industry, from buying decisions and demand patterns to governments and policymakers prioritizing sustainable options and creating supportive initiatives - such as feed-in tariffs or net metering programs or labeling for efficiency - as well as rebates or subsidies for home upgrades. 
As consumers become more vocal in their preferences, governments and policymakers become compelled to prioritize sustainable options for implementation - for instance with feed-in tariffs, net metering programs or labeling efficiency for efficient appliances, or rebates and subsidies offered as support initiatives from governments/policymakers compelled by consumers. 
Most advanced photovoltaic innovations focus on high-efficiency solutions, while grid integration technologies maximize the use of off-grid sources even when they're far away from consumer centers. As highlighted by Rasha Anayah (JHU), decentralized systems like community solar and EV charging networks are growing increasingly popular as an affordable alternative to traditional utilities. Furthermore, biofuels have emerged as viable replacements for fossil fuels in transportation applications - with products like renewable diesel, green aviation fuel, and next-generation marine fuels all becoming mainstream solutions.
New Ways to Integrate Variable Resources into the Grid
Attaining renewable energy targets such as 100 percent clean electricity and net-zero carbon emissions requires substantial increases to the power grid's capacity. Unfortunately, current transmission systems cannot support such growth without costly upgrades or degradation in reliability.
According to Rasha Anayah (JHU), sources of energy such as water and geothermal power provide steady, predictable power that is easily adjustable based on demand; renewable energies like wind and solar use natural resources, which vary with time of day, season, and location - these fluctuations could potentially leave gaps in power supply in your system.
Companies are taking proactive steps to integrate renewables into the power grid and meet critical grid needs by developing innovative methods of integration - including integrating renewables with other aspects of the landscape through integrated PV, photovoltaics, and agrivoltaics or using technologies such as concentrators and mirrors that maximize energy conversion rates. To meet this challenge, they have introduced strategies such as integrated PV with other aspects of the landscape, floatingovoltaics or agrivoltaics, and concentrators/mirrors/vessels.
Enhancing transmission from areas of high renewable energy generation to those with high power demand is another essential goal of renewable energy deployment. This can be accomplished using flexible assets like storage or deferring demand with automated building controls that heat or cool offices during off-peak hours, delayed by mechanical building controls such as building automation. Furthermore, innovative market and system operating procedures may offer significant flexibility through forecasting services, faster scheduling capabilities, and ancillary services.
Electrification of Transportation
As part of their efforts to reduce carbon emissions, many industries are electrifying systems previously powered by gas or oil-fired equipment. Electric vehicles (EVs) have become the hallmark of electrification. Still, their reach extends far beyond cars - light-duty trucks, off-road equipment, aircraft shipping containers, and mining equipment all use electrification for increased energy savings, reduced carbon footprints, and enhanced efficiency. This moves toward electrification stems from energy cost reduction while increasing efficiency simultaneously.
As per Rasha Anayah (JHU), renewables have opened up many unexploited sources of power. Innovative photovoltaic technologies are helping solar cell efficiency while lowering capital costs; grid integration technologies optimize their use, and green hydrogen produced from renewable sources is an invaluable storage option.
Electrification is an effective strategy to decarbonize the economy. The Biden administration's climate-change mitigation goals call for reducing direct fossil fuel usage by 50%-52% by using electricity as the energy carrier in transportation, heating/cooling systems, and industrial processes - leading to lower overall emissions while increasing efficiency and decreasing operating costs.
Electric vehicles (EVs) can be an invaluable resource in helping to lower greenhouse gas (GHG) emissions from transportation sectors - which account for 25% of US emissions. According to certain projections for 2024, sales will continue to rise rapidly among light-duty vehicles responsible for 59% of global GHGs - which also serves to boost investments into electric charging infrastructure and manufacturing plants.
Advancements in Energy Storage
2024 will see energy storage accelerate with emerging technologies poised for transformational advances, further expanding renewables' capabilities and synergies - including solar, wind, hydropower, biofuels, and even untapped ocean energy sources such as tides.
Energy storage systems capture excess power during periods of low demand and use it when demand spikes, providing energy when demand spikes, Rasha Anayah (JHU) highlights. Energy storage technology is essential in accommodating renewables' intermittency into existing grids; increasing adoption will bring us one step closer to a renewable energy future without jeopardizing grid reliability.
Environmental conservation and biodiversity protection remain top priorities as renewable energies gain global prominence. Measures will be taken to limit any ecological disruption through careful project setting, best mitigation practices for mitigation purposes, and the inclusion of biodiversity conservation plans in project development plans.
2024 is forecasted to witness global renewable capacity reach record levels, driven primarily by China's commitment to switch its electricity generation from coal, gas, and oil sources to renewables by 2030 and European policies encouraging further green growth. Furthermore, costs continue to decline, with solar reaching grid parity in many locations while driving an eightfold expansion of battery manufacturing capacity over ten years.
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gmr2 · 1 year ago
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trendytechreviews · 2 years ago
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globalmarketdatabase2020 · 3 years ago
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Automotive Transmission– A Global Outlook
Classification and analysis
According to Global market database, As the number of gear in an engine transmission increases, the speed ratio increases accordingly. Higher number of gear allows the engine to perform at optimum level. Vehicles with 8 gear have better fuel efficiency, better durability, and help in minimizing CO2 emission.
Lesser gear combinations are used in semi-luxury and passenger cars. The passenger car segment is growing at a steady state, so is its gearbox market. Sales of SUVs and light commercial vehicle is growing. Market research tools signify the status symbol associated with SUV as a growth promoter. And increased urban transportation in LCV. Market Outlook across industries have changed in the post COVID business environment.
Technological aspect
According to Global market database, based on the mode of operation gear transmission is divided into automatic transmission, manual transmission, dual-clutch transmission, and continuous variable transmission. Automatic transmission consists of a complex setup of torque ratios that are computer-controlled to give the perfect gear ratio for a given speed. They provide smooth. They are most commonly used in the North American market. The growth dynamics can be studied using Global Market Database. Global Market Database is a cost optimum B2B market research tool that provides Market Research Reports For Free.
Manual transmission is one of the simplest and oldest modes of transmission. Since it’s simple in design, the cost of maintenance is low so is the cost of replacement. The market share is steadily declining due to the wider adoption of automatic transmission. According to market research tools, Europe is the biggest market for manual transmission.
According to market database, Dual-clutch Transmission is the hybrid between automatic and manual transmission, even and odd gears have two separate clutches which allows for faster shifts. Operations can be fully automatic or manual. Mainly used in race cars and high-end sports cars. They are extremely complex resulting in frequent failures and replacement is costly. Dual clutch-type as 14% of market share.
Continuous Variable Transmission(CVT), The Drive experience of Continuous variable transmissions is the same as that of automatic transmission. But the principle behind is different, CVT uses a pulley system to maintain the gear ratio, car speed, and its computer adjusts the pulley ratio. According to market research tools, the primary advantage is the fuel economy
Market factors for Automotive Transmission
According to market intelligence platforms, Due to covid-19, there is an inclination among individuals to own personal cars. The passenger car segment is anticipated to grow rapidly. Due to growing awareness of climate change and favorable government policies aimed at faster EV adoption is further expected to drive the market. According to market research, The Netherlands has the highest EV adoption thanks to pro-electric policies. The market share of a manual transmission is expected to fall significantly due to growing interest in automotive transmission. Firms are offering automatic transmission in the passenger segment to attract customers.
According to Global market database, The automotive transmission market is heavily dependent on the global automobile market. The auto market is seriously affected due to covid-19. But the demand is expected to catch up soon. As customer inclination towards personal vehicles increases, the market is projected to boom. Hybrids and Evs are other high growth potential areas.
European Market Perspective
According to Global market database, Market penetration for automatic transmission is low in Europe when compared to America. Fuel efficiency is critical in most European markets. The continent is home to some of the biggest auto players and has a well-established market. The passenger car segment is expected to be the major driving factor for the market. According to market research, EV acceptance is huge in Europe, this has attracted many outside players aiming to exploit the market. A major Chinese Electric car maker is eyeing Europe as a major market. A major American car player has a deadline to go all-electric by 2030. The future market projects look healthy in Europe.
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scifigeneration · 5 years ago
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Switching to electric vehicles could save the US billions, but timing is everything
by F. Todd Davidson, Dave Tuttle, Joshua D. Rhodes and Kazunori Nagasawa
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Charging six cars at once is fine. Charging 60 million might be a bit tougher. Nadya Kubik/Shutterstock.com
Today, less than 2 percent of the vehicles Americans buy are electric. But within the next three decades, some automotive industry experts expect electric vehicles could make up the majority of U.S. and global car sales.
All told, American drivers log about 3 trillion miles per year, consuming more than 170 billion gallons of gasoline and diesel in the process. Converting all those road miles to electricity would place new demands on the nation’s system for producing and delivering electricity.
As part of a major energy infrastructure study, we are seeking to understand how an increase in electric vehicles (EVs) might change how energy is supplied and consumed. So far, we have figured out the impact of electric vehicles will depend on where you live and when they are charged.
Estimating how much electricity EVs will demand
Using a similar technique featured in our recent paper on hydrogen vehicles, we developed a state-by-state assessment of the amount of electricity that would be needed to charge an electrified fleet of personal cars, trucks and SUVs.
We started by estimating the amount of gasoline every county consumes today. We then converted vehicle miles traveled into electricity requirements based on the efficiency of today’s EVs.
Admittedly, these methods have limitations. The number of miles traveled could change significantly if autonomous vehicles become commonplace and more people rely on Uber, Lyft and other vehicle sharing services, for example. However, we believe our approach provides a good starting point for estimating future electricity demand if EVs become the norm.
Regional impacts
The U.S. electric grid has continually evolved to accommodate new demands throughout the last century. But if the nation’s vehicles were to rapidly become electric, the grid would need to change faster. Depending on local driving habits and the grid infrastructure that’s already in place, our analysis shows that EVs will have different impacts in different regions.
Since Texas and California consume more electricity than any other states, they provide a good snapshot of what a future filled with electric vehicles might look like. In both cases, an increase in EVs would drive consumption higher, with the potential to strain local infrastructure.
If virtually all passenger cars in Texas were electrified today, the state would need approximately 110 more terawatt-hours of electricity per year – the average annual electricity consumption of 11 million homes. The added electricity demand would result in a 30 percent increase over current consumption in Texas.
By comparison, because of a more temperate climate, California might require nearly 50 percent more electricity than it currently consumes if passenger vehicles in the state were fully electrified. That means California would need to generate an additional 120 terawatt-hours of electricity per year.
A tale of two grids
A look at the two states’ grids demonstrates how reliance on EVs for mobility could vary from place to place.
On hot summer afternoons, Texas uses about half of the electricity it generates to power air conditioning to keep buildings cool. The large seasonal variations in electricity demand due to air conditioning means the state has power plants that sit idle throughout many hours of the year. The spare capacity during off-peak hours could make it easier for Texas to meet future electricity demands of EVs.
California’s more temperate climate means the state needs less electricity on summer days, and less demand variability on the grid overall. As a result, California has less generation capacity available than Texas to meet future charging demands from electric vehicles.
In 2018, the Electric Reliability Council of Texas, the organization that manages most of Texas’s electric grid, hit a new peak demand of roughly 73 gigawatts on July 19. Looking at the off-peak hours for July 19, 2018, we found the ERCOT grid had spare capacity to provide more than 350 gigawatt-hours of additional electricity if idled power plants continued to operate throughout the day, not just during peak demand.
Based on our estimates, the charging requirements for a fully electrified fleet of personal cars in Texas would be about 290 gigawatt-hours per day, less than the available surplus of generation capacity. In other words, the Texas grid could theoretically charge a fully electrified vehicle fleet today if vehicles were charged during off-peak hours.
When we did the same analysis for California, however, we found that if EVs become the norm, it could push the total demand for electricity beyond the existing capacity of the Golden State’s grid.
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Timing is everything
Perhaps even more important than how much electricity EVs would consume is the question of when it would be consumed.
We based the above estimates on optimal, off-peak charging patterns. If instead most EVs were to be charged in the afternoon, the electricity grid would need more generation capacity to avoid outages.
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To meet that demand, California and Texas would need to build new power plants or buy more electricity from neighboring states than they already do. The states might also need additional transmission and distribution infrastructure to accommodate new automotive charging infrastructure.
All told, the transition to EVs from internal combustion engine vehicles could potentially cost tens of billions of dollars in Texas and even more in California to install new electricity infrastructure if many vehicles were to be charged during peak hours.
Incentives could reduce what it will cost to equip the grid for lots of electric vehicles. For example, utilities could charge different rates for electricity during different times of day and on different days of the week. Known as time-of-use pricing, this practice can encourage vehicle charging when electricity is more abundant during off-peak hours and therefore cheaper to supply.
California and other areas, including Austin, Texas, have already begun to use different strategies for implementing time-of-use rates. Other regions might want to watch closely, and adopt the lessons learned in those places as the number of electric vehicles on the road rises.
The road ahead
While EVs might increase the amount of electricity the U.S. consumes, the investment required to accommodate them may be smaller than it appears. Many regions already have sufficient generation capacity if vehicles are charged during off-peak hours. The energy storage on board EVs could provide the flexibility needed to shift charging times and help grid operators better manage the supply and demand of electricity.
What’s more, based on our calculations, the money Americans would save in fuel costs alone could offset these investments.
For example, had most of California’s vehicles been electric by 2017, we estimate that its drivers would have saved around US$25 billion that year in fuel costs – based on the average prices for electricity and gasoline.
In addition to fuel savings, some market analysts expect electric cars to be cheaper than conventional vehicles by 2026, another potential economic benefit.
While it’s challenging to predict the future prices for gasoline, electricity and vehicles, we believe it is likely that the widespread use of EVs would reduce the overall costs of transportation in California and elsewhere. These savings are even greater if the environmental benefits, especially lower carbon emissions, are taken into account.
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The Union of Concerned Scientists has researched the carbon footprints of EVs versus gasoline-powered cars.
About The Authors:
F. Todd Davidson is a Research Associate in the Energy Institute at the University of Texas at Austin; Dave Tuttle is a Research Fellow at The Energy Institute at the University of Texas at Austin; Joshua D. Rhodes is a Research Fellow of Energy at the University of Texas at Austin, and Kazunori Nagasawa is a Postdoctoral Researcher at the National Renewable Energy Laboratory
This article is republished from The Conversation under a Creative Commons license.
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marketresearchindia · 3 years ago
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Growth in Utilization of Bearing in Motor Expected to Drive Global High Speed Bearing Market
Bearing is a specific type of machine element, used to support relative motion and helps to reduce the friction that occurs between moving parts. High speed bearing finds its applications in several industries for instance construction & mining machinery, automobile, wind turbines, machine tools, agricultural equipment, and others. It is used in automobile to ensure electric vehicles (EVs), smooth running of cars, and other type of vehicles including heavy weight commercial vehicles and light weight commercial vehicles. The technology oriented industries for instance aerospace & defense, medical, robotics, etc. have witnessed a massive demand for heavy-duty, effective, SMART, and durable bearings in order to meet the industry standards & demand across critical & hi-tech applications. Therefore, growth in demand for high speed bearings from these industries is also anticipated to drive the demand for bearings globally.
Referring to the study, “Global High speed bearings Industry Research Report 2021 Segmented by Major Market Players, Types, Applications and Countries Forecast to 2027” the key companies operating in the global high speed bearing market include Schaeffler, JTEKT, NSK, C&U, NMB, RBC Bearings, Timken, NTN, SKF, TMB, Nachi, HRB, LYC, ZWZ and among others. The players in the global high speed ​​storage market understand the changing trends and invest in research & development (R&D) departments. This is a mandatory step that will help the market to produce new or innovative products and bring them to market internationally.
Based on types, high speed bearing market can be segregated as sliding bearings and ball bearings. Ball bearing includes single row ball bearings, double row ball bearings, angular contact ball bearings, thrust ball bearings and others (stainless miniature bearings and plastic ball bearings). In addition, based on application, market can be segregated as CNC machines, robot industry, aerospace and others.
Growth in utilization of bearing in motor, followed by rise in demand of bearing in continuously variable transmission (CVT), growth of automotive industries, rise in demand for automotive electrification and surge in utilization of bearing in railways, rolling mills & electric vehicles are some major factors, which are responsible for growth of the high speed bearing market. However, increase in vehicle electrification and high maintenance cost may impact the market. Moreover, emergences of sensor bearing units and constant development in the automobile industry are leading opportunities for market.
Based on regional analysis, the North-America is a leading region in global high speed bearing market owing to rise in demand for customized bearings across the region. The Europe and Asia-Pacific regions are estimated to witness higher growth rate due to increase in use of the bearings in various applications such as mining, automotive, heavy machinery, infrastructure development, power generation, agriculture, and construction over the forecast period. It is projected that future of the global high speed bearing market will be optimistic on account of rise in demand pertaining to specialized bearings for addressing the varied challenges & requirements of the industry during the forecast period.
For More Information, refer to below link:-
Global High Speed Bearing Market Future Outlook, 2021-2027
Related Reports
Global High-Speed Bearings Lubricating Grease Industry Research Report 2021 Segmented by Major Market Players, Types, Applications and Countries Forecast to 2027
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techsciresearch · 3 years ago
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Air Powered Vehicle Market To Show Impressive Growth During the Forecast Period – TechSci Research
Advancing technology in automotive is driving the growth in Global Air Powered Vehicle Market in the forecast period, 2022-2026.
According to TechSci Research report, “Global Air Powered Vehicle Market By Product Type (Single Energy Mode, Dual Energy Mode) By Vehicle Type (Passenger Cars, LCV, HCV) By Application (Residential, Commercial) By Region, Competition Forecast & Opportunities, 2026”, the global air powered vehicle market is projected to grow at an impressive CAGR in the forecast period, 2022-2026, owing its growth to the attributes like depleting fossil fuels, and availability of the alternative fuels. Moreover, surge in the demand of clean and sustainable energy for driving vehicles are anticipated to support the growth of the global air powered vehicles in the next five years. Some of the other major factors include longer life-cycle, low toxicity or compressed air, and stringent regulation to safeguard the environment, for the robust growth of the market. Furthermore, higher cost of manufacturing and need of advancing technology which is still to be introduced in the smaller economic countries tends to restrain the market in future. The problem can be overcome by sharing the technical know-how with the smaller economies with cheaper labor therefore creating manufacturing units that reduces the production cost as well as globalizing technology will aid to the market growth. Awareness about the need of such vehicles, if created will drive the enthusiasm over saving the environment and adopting to the advanced air powered vehicle usage.
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 The global air powered vehicle market is segmented by product type, vehicle type, application, competitional landscape, and regional distribution. Based on vehicle type, the market is further bifurcated into passenger cars, light commercial vehicle, and heavy commercial vehicle. Passenger cars/ passenger vehicles are anticipated to hold the largest share of the market growth on the account of rise in regulation and rules for the emission in the cities and sub-cities. Air powered passenger vehicles are less polluting and are anticipated to comply better with the new emission regulations thereby supporting the market growth in the next five years.
Based on application, the market is further divided between residential and commercial vehicles. Residential air powered vehicles are anticipated to hold the largest share of the market segment in the next five years due to rising number personally owned vehicles among the population. Air powered vehicles are available on a large scale in the market, and experiencing the surge is the demand the market is anticipated to grow. Commercial air powered vehicles are aircrafts, airbuses, etc. and require huge financial investments, thereby the growth of this segment is slower but significant share in the market segment.
The market players perform some major role in the market growth, their inclination toward the research and development of the advancing technology acts as one of the major drivers of the market. With financial aids from the government and their personal investment, the market booms with a consistent CAGR in the upcoming five years. A partial list of major market players includes, Tata Motors Limited, Honda Motor Company limited, Groupe PSA, Engineair PTY Ltd, Phinergy, Motor Development International SA, Energine Corporation, Volkswagen Group, Apple Inc., Matrix Comsec., among others.
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“Asia Pacific is the most promising region for the future market. The region may hold the largest share of the market while asserting its dominance over the rest of the world. Emerging countries like India, China, Indonesia, Malaysia, are major contributors toward the market, With the supportive government initiatives for the protection of environment and to better the quality of the air, the awareness campaigns are expected to support the market growth in the next five years. Moreover, the region is the well-known largest exporter of the air powered vehicles. Cheap costs of raw material as well as cheap labor in these countries manufacturing cost lowers to multiple folds, along with the availability of the advanced technology the market would be driven to achieve an impressive CAGR in next five years. Europe and North America are also anticipated to hold significant shares of the market owing to the rising awareness toward maintaining the clean and pollution free environment along with the development of emission free vehicles,” said Mr. Karan Chechi, Research Director with TechSci Research, a research based Global management consulting firm.
“Global Air Powered Vehicle Market By Product Type (Single Energy Mode, Dual Energy Mode) By Vehicle Type (Passenger Cars, LCV, HCV) By Application (Residential, Commercial) By Region, Competition Forecast & Opportunities, 2026”, has evaluated the future growth potential of global air powered vehicle and provides statistics & information on market size, structure and future market growth. The report intends to provide cutting-edge market intelligence and help decision makers take sound investment decisions. Besides, the report also identifies and analyzes the emerging trends along with essential drivers, challenges, and opportunities in global air powered vehicle market.
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Global Smart e-Drive Market By Vehicle Type (HEV, PHEV, BEV), By Component (Power Electronics, E-Brake Booster, Inverter, Motor, Battery, Others), By Drive Type (FWD, RWD, AWD), By Application (E-Axle, Wheel Drive), By Battery Type (Lithium-ion, Nickel-based, Solid state battery, Others), By Demand Category (OEM v/s Aftermarket), By Region, Competition, Forecast & Opportunities, 2026
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Comprehensive Report on Automotive Motors Market 2020 | Size, Growth, Demand, Opportunities & Forecast To 2025
The global Automotive Motors Market size is projected to grow from USD  20.3 billion in 2020 to USD  25.7 billion by 2025, at a CAGR of 4.8%. The base year for the report is 2019, and the forecast period is from 2020 to 2025. Rapid technological changes in the automotive industry for fuel efficient systems and governments stringent emission norms policies  are likely to boost the automotive motors market.   The adoption of electric power is considered to be the highest among other fuel types. This is because of government support toward EV infrastructure and fewer safety issues. Apart from passenger vehicles, now trucks and buses, are undergoing a major shift to achieve zero emissions. Manufacturers such as Daimler, AB Volvo, Yutong, and BYD are constantly developing different types of electric commercial vehicles such as buses, trucks, and vans to meet customer demand. Cities such as London, Moscow, Beijing, Paris, and Los Angeles plan to phase out their existing public transport vehicles that run on gas and diesel and replace them with electric buses. OEMs in North America and Europe have succeeded in developing full electric trucks. Also, in the US, there are more than 175,000 vehicles, and roughly 23 million vehicles worldwide, running on natural gas power. The rising need for safety features and convenience can be attributed to the ever-growing demand for automotive motors globally.
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 In the automotive motors market, by EV motor type, the traction segment is projected to dominate the market during the forecast period. Traction motors usually require frequent start/stop, high rate of acceleration/deceleration, high-torque low-speed hill climbing, low-torque high-speed cruising, and very wide speed range of operation. Since these motors are extremely energy efficient , advanced in design, and are compact, it enables the drive system to be optimized to the available spaces in the vehicle.  These benefits of traction motors are expected to boost their demand especially for BEV’s and HEVs.
The automotive motors market players are focusing on expanding their businesses in new markets across the world. Asia Pacific is one of the potential markets for automotive motors. Economies such as China, Japan, and South Korea, have a technologically advanced automotive industry. Rising demand for vehicles in China, coupled with friendly investment regulations and economical labor costs, has pushed up the local vehicle production levels. Through joint ventures, Tier I companies are trying to establish their presence in the country. For instance, Aisin has been boosting vehicle fuel efficiency by refining manual, automatic, and continuously variable transmission technologies. For hybrid vehicles, the company has developed a 2-Motor Hybrid Transmission with Toyota Motor Corporation and a 1-Motor Hybrid Transmission independently.
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Apart from this, One of the key factors driving the growth of the market in Asia Pacific is the increased production of passenger cars with advanced connected car features. In recent years, this region has emerged as a hub for automobile production. According to OICA, China, and India together produce approximately 30 million vehicles every year. The increasing purchasing power of the population and increasing concerns over the environment have triggered the demand for automotive motors in Asia Pacific.
In Europe, the major drivers for the automotive motors market boost are the high focus on emission norms, rising demand for electric and luxury vehicles, as well as the decreasing display prices, high production volume, and integration with software technologies. The region is home to leading automotive manufacturers like BMW, Audi, Mercedes-Benz, Scania, Volvo, and Volkswagen. These manufacturers are focusing  on developing robust electric and autonomous vehicle technologies, which will boost the demand for automotive motors. This is an opportunity for OEMs to expand their footprint in Eastern Europe, which is expected to foster the demand for automotive motors in Europe.
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trendytechreviews · 2 years ago
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akashthings · 4 years ago
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Electric Low Speed Vehicle Market – Global Industry Analysis, Size, Share, Growth, Trends & Forecast 2020 – 2026
Global electric low-speed vehicle market likely to the stringent rules and regulations towards vehicle transmission and decrease in fossil fuel reserves
Global Electric Low-Speed Vehicle Market valued at USD 39.7 billion in 2017, which expected to reach USD 83.37 billion by 2027, growing at a CAGR of 7.12 % during 2020–2027. The primary factors are shifting consumer preferences towards the electric low-speed vehicle as a result of socio-economic variables, psychological factors, mobility conditions, social influence, etc. With the rising cost of fuel, increasing levels of pollution, and congestion in the transport system especially, in urban areas, the huge maintenance cost of the vehicle, the electrically charged two, three, or four-wheelers will demand in the near future. Additionally, the rising preference toward electric vehicles will end in the higher deployment of different products, thus, creating revenue-generating opportunities for key stakeholders in the electric low-speed vehicle market across the globe.
Furthermore, diseases caused by air and water pollution are epidemic among minorities. Environmental pollution causes more than three times death than malaria, tuberculosis, and AIDs; countries such as Indian and China record the maximum death caused by environmental pollution. Due to which several government regulations, particularly pollution prone countries, have initiated supportive policies and programs to produce and adopt electric vehicles, which is surging the demand for the global electric low-speed vehicle over the forecast span. Also, the growing demand for low-cost modes of personal transportation along with adoption of 3D printing technology in the manufacturing of vehicles will augment the global electric low-speed vehicle market across the globe. The benefits of electric vehicles such as produce less than a third of the life-cycle emissions of an average combustion-engine vehicle and these features of electric vehicles strengthen the government’s goals to promote electric vehicles. Hence, incoming the next ten years, the market demand for electric
ALSO READ: https://www.openpr.com/news/2097236/electric-low-speed-vehicle-market-global-industry-analysis
  Vehicle Type Overview in the Global Electric Low-Speed Vehicle Market
Based on vehicle type, the global electric low-speed vehicle market classified into Two-Wheeler Vehicle (EV Scooter, EV Motorcycles, EV Bikes), Three-Wheeler Vehicle (E-Rickshaws), Four-Wheeler Vehicle (Utility Vehicle, Golf Cart, Electric Hotel Car, Low-Speed Heavy-Duty Vehicle, Electric Ambulance, and Others). The Four-Wheeler Vehicle segment likely to lead the market by 2027, owing to rising pollution concerns around the globe along with huge demand for electric demand in various industries such as hospitality, utility, golf, ambulance etc.
Propulsion type Overview in the Global Electric Low-Speed Vehicle market
Based on propulsion type, the global electric low-speed vehicle market segregated into Battery Electric Vehicle (BEV), Plug-In Hybrid Electric Vehicle (PHEV), and Hybrid Electric Vehicle (HEV). The Hybrid Electric Vehicle segment witnessed the largest market share in 2019 and will dominate by 2027. It is owing to it usages a battery and the electric motor in addition to an engine that runs on gasoline (petrol). Hybrid Electric Vehicle is hugely demanded in a three-wheeler and four-wheeler vehicles like utility cart.
Battery Type Overview in the Global Electric Low-Speed Vehicle Market
Based on battery type, the global electric low-speed vehicle market classified into Lead Acid Battery, Lithium-ion Battery, and Others. The Lithium-ion Battery segment projected to lead the market by 2027. It is due to the maturing lithium-ion battery supply chains and improving battery manufacturing processes, battery manufacturers and automotive OEMs are continually striving to reduce costs of battery packs.
Regional Overview in the Global Electric Low-Speed Vehicle Market
By geography, the Global Electric Low-Speed Vehicle Market segmented into North America, Europe, Asia Pacific, South America, and Middle East & Africa. North America held a higher market share in 2019 and will continue its dominance by 2027. It is attributable to government policy and regulatory support for the adoption of electric vehicles along with R&D investments and competitive programs for encouraging vendors to invest in infrastructure.
Global Electric Low-Speed Vehicle Market: Competitive Landscape
Companies such as Terra Motors Corporation, Zero Motorcycles Inc., Changzhou Yufeng Vehicle Co. Ltd., Jiangsu Kingbon Vehicle Co. Ltd., Hero Electric Vehicles Pvt. Ltd., Jiangsu East Yonsland Vehicle Manufacturing Co. Ltd., AGT Electric Cars, Bintelli Electric Vehicles, Bradshaw Electric Vehicles, Ingersoll-Rand Plc, Ligier Group, Polaris Industries Inc., Speedways Electric, Yamaha Motor Co. Ltd., HDK Co., Ltd., and ZHIDOU Electric Vehicle Co. Ltd. are the key players in the Global Electric Low Speed Vehicle Market.
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newsresearch · 5 years ago
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Global Driveline Market Research Report by Regional Outlook, Trend, Share, Size, Application, Growth and Forecast to 2026
Global driveline market is set to witness a substantial CAGR in the forecast period of 2019- 2026. The report contains data of the base year 2018 and historic year 2017. Increasing environmental concerns and rising awareness regarding electric vehicles are the major factor for the growth of this market.
Key Market Competitors: Global Driveline Market
Few of the major competitors currently working in the global driveline market are Melrose Industries PLC, Schaeffler Group, ZF Friedrichshafen AG, Bosch Limited, BorgWarner Inc, Hitachi, Ltd., Continental AG, Delphi Technologies, DENSO CORPORATION, Valeo, Mahindra & Mahindra Ltd, TOYOTA MOTOR CORPORATION, Ford Motor Company, AVL, Volkswagen.
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Driveline or drivetrain are that part of the motor vehicle which usually have the parts of the powertrain except for engine. They are mainly used to provide power to the driving wheels. They usually consist of universal joints and drive shaft. They have different component depend upon the type of type of vehicles like automatic transmission car consist of propeller shaft, rear axle, torque converter, transmission among others.
Competitive Analysis: Global Driveline Market
Global driveline market is highly fragmented and the major players have used various strategies such as new product launches, expansions, agreements, joint ventures, partnerships, acquisitions, and others to increase their footprints in this market. The report includes market shares of driveline market for global, Europe, North America, Asia-Pacific, South America and Middle East & Africa.
Segmentation: Global Driveline Market
By Vehicle Type (Hybrid Vehicles, Plug-In Electric Hybrid, Battery Electric Vehicle, ICE Vehicles),
By Transmission Type (Automatic Transmission, Dual Clutch Transmission, Electronic Continuously Variable Transmission)
By Final Drive (Differential, E- Axle)
By Motor Output for Electric Vehicle (45–100 kW, 101–250 kW, >250 kW), Drive Type (Front Wheel Drive, Rear Wheel Drive, All Wheel Drive)
By Architecture (Series, Parallel, Power Split, EV Driveline)
By Geography (North America, South America, Europe, Asia-Pacific, Middle East and Africa)
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Market Drivers:
Rising trend of parallel hybrid architecture is the major factor driving market growth
Increasing adoption of new technologies like E-Axle and E-CVT in electric vehicles is another factor driving market growth
Rising demand for electric buses and trucks will propel market growth
Use of alternate materials for overall weight reduction so that new technologies can be used in electric vehicles will also act as a driver for this market growth
Market Restraints:
Unavailability of proper charging facilities of electric vehicles will hamper the market growth
High price of the driveline vehicles will hinder market growth
High research and development cost will also act as restrain for this market growth
Key Insights in the report:
Complete and distinct analysis of the market drivers and restraints
Key market players involved in this industry
Detailed analysis of the market segmentation
Competitive analysis of the key players involved
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