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Increasing the Efficiency of Electric Vehicle Drives with Supercapacitors in Power Supply

机译:通过电源中的超级电容器提高电动汽车驱动器的效率

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The electric vehicles are considered one of the most fast-growing industries today. Their efficiency exceeds the efficiency of internal combustion engines, but it can be improved even more. The power supply - Li-Ion accumulator - provides significant heat losses due to its internal resistance. Connecting supercapacitors in-parallel to the accumulator battery can decrease these losses. This paper shows that efficiency of such connection depends on the supercapacitor capacitance and the rational value of capacitance, providing minimum energy consumption, exists. During the study the modernized system of power supply distribution for pause recharging of supercapacitors has been proposed. This system provides additional energy economy without implementing different components to the electric drive. The study shows that the tendency of increasing the efficiency of electric vehicle drives works for high-voltage power supply as well as for low voltage ones with the implementation of a DC-DC voltage converter.
机译:电动汽车被认为是当今发展最快的行业之一。它们的效率超过了内燃机的效率,但是可以进一步提高。电源-锂离子蓄电池-由于其内部电阻而产生大量的热损失。将超级电容器与蓄电池并联连接可以减少这些损耗。本文表明,这种连接的效率取决于超级电容器的电容,并且存在合理的电容值(提供最小的能量消耗)。在研究过程中,提出了一种用于超级电容器暂停充电的现代化电源分配系统。该系统可提供额外的能源经济性,而无需在电驱动器上安装不同的组件。研究表明,通过实施DC-DC电压转换器,提高电动汽车驱动器效率的趋势既适用于高压电源,也适用于低压电源。

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