The results show that using an electric vehicle battery for energy storage through battery swapping can help decrease investigated environmental impacts; a further reduction
Lithium-ion (or Li-ion) batteries are the main energy storage devices found in modern mobile mechanical equipment, including modern satellites, spacecrafts, and electric vehicles (EVs), and are required to
Abstract—For wide use of electric vehicles (EVs), there are different aspects of the electric power system to consider for making it ready for the increased load by battery charging. The topics include power production,
Plug-in electric vehicles include two types: (1) plug-in hybrid electric vehicles (PHEVs) use an electric motor and an internal combustion engine for power, and they use
The global market of electric vehicles has become one of the prime growth industries of the 21st century fueled by marketing efforts, which frequently assert that electric
In this study, for two cases that have the greatest impact on the lifespan of the battery (i.e., cases for economic profit and self-use purposes), the electricity flows of the
In order to increase the stability and movement safety of electric vehicles (EV) under various operation conditions, the battery mass distribution on the EV floor and its load
Effect of charge rate on capacity degradation of LiFePO 4 power battery at low temperature. Xiaogang Wu, Xiaogang Wu. Limited by the current power battery technology, electric
It investigates the effect of improvements in recycling and reuse of LIBs used in EVs on the life cycle environmental impact of the battery. Furthermore, the findings of this
A V2B system, with 6 electric vehicles, is simulated, and the effect of the battery charging/discharging time and the battery replacement cost has been studied.
The study showed that the DC link capacitor can provide reactive power support with no effect on battery degradation. In a direct voltage control method was used to enable EV charger at DC fast charging station to inject
The short life of electric vehicle (EV) batteries is an important factor limiting the popularization of EVs. A hybrid energy storage system (HESS) for EVs combines Li-ion
As an important component of new energy vehicles, the safety of lithium-ion batteries has attracted extensive attention. To reveal the mechanism and characteristics of
The design and optimization of the power battery and torque converter of electric motors to increase the dynamic stability of the EV were also considered [5, 6]. The
As part of the U.S. Department of Energy''s Advanced Vehicle Testing Activity, four new 2012 Nissan Leaf battery electric vehicles were instrumented with data loggers and operated over a
Effect of high Ni on battery thermal safety. Dong Wang, Dong Wang. National and Local Joint Engineering Technology Center for Intelligent Power Integration Technology for
An integrated planning model (IPM) with a carbon law, incentives for renewable-based electricity, the elimination of nuclear power plants, emissions taxes according to minimal
Abstract—For wide use of electric vehicles (EVs), there are different aspects of the electric power system to consider for making it ready for the increased load by battery
1 天前· Researchers found the stop-start way we drive and the variable rate the battery discharges power actually prolongs battery life by up to 38% compared to traditional tests.
Effect of charge rate on capacity degradation of LiFePO 4 power battery at low temperature. Xiaogang Wu, Xiaogang Wu. Limited by the current power battery technology, electric vehicles show extremely poor duration performance and
Electric vehicles (EVs) can form a massive energy storage system (referred as Vehicle-to-grid, V2G) in electrical power system, charging during low demand times and
Charging stations are needed to charge the electric vehicle battery. In this study, the effects of electric vehicles on the microgrid network are analyzed. Electric vehicles have
The contribution of battery electric vehicles (BEVs) and plug-in hybrid electric vehicles (PHEVs) to mitigating/reducing fine particulate matter (PM2.5) emissions was researched through a panel of 29 European countries
The impact of vehicle velocity and acceleration on energy consumption and battery life is analyzed, considering the characteristic of the discharge rate of power batteries
We consider four operating methods—gasoline, diesel, hybrid, 3 and electric—and four fuel types as per the electricity generation mix used to generate power for
The effects of battery storage on power systems have been exploredinmanycountries 8–13,suchastheUS,EU,Australia,andIndia. While the benefits of battery storage are clear,
The more electric energy consumed by the battery pack in the EVs, the greater the environmental impact caused by the existence of nonclean energy structure in the electric
Electric propulsion systems are now used in a diverse range of light vehicles, from pedal-assistance in on-road and off-road electric bicycles and 3- and 4-wheeled urban
Main 3 effects of electric current are Heating, Chemical & Magnetism. There are various day-to-day benefits of these electric current effects such as heating water, electrolysis,
Most studies on the acceleration process of electric vehicle focus on reducing energy consumption, but do not consider the impact of the power battery discharge current and
Scientific Reports 14, Article number: 157 (2024) Cite this article Most studies on the acceleration process of electric vehicle focus on reducing energy consumption, but do not consider the impact of the power battery discharge current and its change rate on the battery life.
Abstract—For wide use of electric vehicles (EVs), there are different aspects of the electric power system to consider for making it ready for the increased load by battery charging. The topics include power production, peak load management, distribution transmission capacity but also distribution network power quality and many more.
According to the indirect environmental influence of the electric power structure, the environmental characteristic index could be used to analyze the environmental protection degree of battery packs in the vehicle running stage.
EV chargers, due to the use of power electronic devices, can negatively impact power quality when integrating high numbers of Electric Vehicles (EVs) into the power network. The chargers inject harmonics into the power grid, which can lead to negative effects on electric power system components designed for pure sinusoidal waveforms and increase system losses.
Depending on energy system configurations, in a system with high renewable penetration or significant renewable curtailment, adding EVs can reduce environmental impact by replacing internal combustion engines when the EV batteries are powered by renewable electricity.
The life cycle impact assessment results showed high levels of vehicle to grid use by an electric vehicle increased impacts of 11 investigated impact categories compared with using battery stationary storage, whereas lower levels of vehicle to grid support by the vehicle a day had lower impact per kilowatt-hour stored.
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