IEEE Electrification Magazine · 2020 · 14 citations · 10 references
Electric Vertical TakeoffEngineeringHigh-energy-density Lithium-ion BatteriesLanding AircraftBattery TechnologyHigh-energydensity Li-ion BatteriesPack Design PerspectiveEnergy Storage DeviceElectrical EngineeringLithium-ion BatteryLithium-ion BatteriesEnergy StorageEnergy Storage SystemSolid-state BatteryElectrochemistryElectric BatterySupercapacitorsFast Charging CapabilityLi-ion Battery MaterialsBattery ConfigurationBatteries
In recent years, Lithium-ION (LI-ION) battery packs have been the dominant energy storage system (ESS) in electrified transportation applications such as material handling, robotics, and electric vertical takeoff and landing aircraft. These applications prefer a high-energy-density and lightweight ESS owing to size and weight limitations. However, they are often equipped with an oversized battery pack to mitigate the long downtime due to the low charging rates (1C) of high-energydensity Li-ion batteries. Fast charging is a potential solution to create a "filling a tank" experience that has recently drawn tremendous interest from researchers and the industry.
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Asymmetric Temperature Modulation for Extreme Fast Charging of Lithium-Ion Batteries
Xiaoguang Yang, Teng Liu, Yue Gao et al. · Joule · 2019 · 362 citations · Full text