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Control Strategy for Efficient Utilisation of Regenerative Power through Optimal Load Distribution in Hybrid Energy Storage System

机译:通过最佳负载分布在混合能量存储系统中有效利用再生功率的控制策略

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With an increased focus on green transportation, hybrid energy storage systems (HESS) for Electric Vehicles (EV) are gaining importance in recent years. In this paper, we propose a control strategy for optimal distribution of power demand between battery and supercapacitor (SC) in a HESS, as well as efficient utilization of the regenerative braking power. A DC/DC boost converter based power splitting strategy has been proposed. Two control blocks are proposed for charging and discharging of energy storage, which reduces the rate of discharge current, thereby improving the health and life of the battery. Simulation results are presented for the proposed circuit and compared with the state-of-the-art topology. The results show that the proposed control strategy improves State-of-Charge (SOC) of the battery from 84% to 94.4% in comparison with only battery held systems. The depth of discharge (DOD) also improved by 10.4%, which helps to enhance the range of the HESS based EV from a single charge.
机译:随着近年来,电动汽车(EV)的混合能储能系统(HESS)的重点增加,近年来越来越重要。在本文中,我们提出了一种控制策略,以便在HESS中电池和超级电容器(SC)之间的功率需求的最佳分布,以及高效利用再生制动功率。已经提出了基于DC / DC升压转换器的功率分裂策略。提出了两个控制块用于充电和放电能量存储,这降低了放电电流的速率,从而改善了电池的健康和寿命。仿真结果显示为提出的电路,与最先进的拓扑相比。结果表明,与电池持有的系统相比,该拟议控制策略可提高电池的充电(SOC)从84%到94.4%。放电深度(DOD)也提高了10.4%,有助于从单电荷增强贝塞基EV的范围。

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