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Application of Batterv -Ultracapacitor Hybrid System in the Hybrid Electric Vehicles

机译:电池-超级电容器混合动力系统在混合动力汽车中的应用

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The main factors which include low charge/discharge efficiency of high current, low power density and poor low-temperature performance lead to the unsatisfactory situation for hybrid electric vehicles (HEVs), which involves the inadequate braking-energy recovery and short battery lifetime and limitation of working environment. To make up the performance of single battery, a battery and ultracapacitor (UC) hybrid system is used to give full play to the energy of the battery and power of the UC. This paper aims to put forward the design method of a battery-UC hybrid system from the perspective of the vehicle requirements and parameter matching. The experiment indicates that the hybrid power system has improved the efficiency of braking-energy recovery and has decreased the demanding power of battery markedly, thus prolonged the battery lifetime. Meanwhile, the UC's high low-temperature performance has improved the low-temperature performance of integrated power system.
机译:高电流充电/放电效率低,功率密度低和低温性能差的主要因素导致混合动力汽车(HEV)的状况不理想,这包括制动能量回收不足,电池寿命短和局限性工作环境。为了弥补单电池的性能,电池和超级电容器(UC)混合系统用于充分发挥电池的能量和UC的功率。本文旨在从车辆需求和参数匹配的角度提出一种电池-UC混合动力系统的设计方法。实验表明,该混合动力系统提高了制动能量回收的效率,并显着降低了电池的需求功率,从而延长了电池寿命。同时,UC的高低温性能改善了集成电源系统的低温性能。

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