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A New Battery/Ultracapacitor Energy Storage System Design and Its Motor Drive Integration for Hybrid Electric Vehicles

机译:混合动力电动汽车的新型电池/超级电容器储能系统设计及其电机驱动集成

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摘要

This paper proposes a new energy storage system (ESS) design, including both batteries and ultracapacitors (UCs) in hybrid electric vehicle (HEV) and electric vehicle applications. The conventional designs require a dc–dc converter to interface the UC unit. Herein, the UC can be directly switched across the motor drive dc link during the peak power demands. The resulting wide voltage variation due to UC power transfer is addressed by the simple modulator that is introduced in this paper, so that the motor drive performance is not disrupted. Based on this new methodology, this paper further introduces two ESS schemes with different topologies, namely 1) UC rating and 2) energy flow control. They are applicable to both lightly and heavily hybridized HEVs. Both schemes have the benefits of high efficiency (without a dc–dc link) and low cost. The simulation and experimental results validate the new methodology.
机译:本文提出了一种新的储能系统(ESS)设计,包括混合动力汽车(HEV)和电动汽车应用中的电池和超级电容器(UC)。传统设计需要一个DC-DC转换器来连接UC单元。在此,在峰值功率需求期间,可以在电动机驱动直流链路上直接切换UC。本文介绍的简单调制器解决了由于UC功率传递而导致的宽电压变化,从而不会破坏电机驱动性能。基于这种新方法,本文进一步介绍了两种具有不同拓扑结构的ESS方案,即1)UC额定值和2)能量流控制。它们适用于轻度和高度杂交的混合动力汽车。两种方案都具有高效率(无dc-dc链路)和低成本的优点。仿真和实验结果验证了该新方法的有效性。

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