Improvement of drive range, acceleration and deceleration performance in an electric vehicle propulsion system

X. Yan, D. Patterson
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引用次数: 41

Abstract

This paper presents technologies that will be employed in a battery electric vehicle, aiming at improving the vehicle drive range, acceleration and deceleration performance and reducing the cost. Firstly it discusses a short-term power management scheme employing a high-power-density ultracapacitor bank to load level a high-energy-density, cost-effective but low-power-density Zn-Br battery for satisfactory overall performance of the vehicle power source. Then it looks at the issue of constant power operation of a BDCM propulsion system. A novel multifunctional DC-DC converter topology has been proposed for both short-term power management and the constant power operation of the BDCM propulsion system. It features simple circuitry, high efficiency, and low cost. Analysis of the operation principles of the multifunctional DC-DC converter is given. Control methods of regenerative braking of a BDCM at different operation modes are especially addressed.
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电动汽车推进系统续驶里程、加减速性能的改进
本文介绍了将用于纯电动汽车的技术,旨在提高汽车的续驶里程、加减速性能和降低成本。首先讨论了采用高功率密度超级电容器组加载高能量密度、低成本、低功率密度的锌硼电池的短期电源管理方案,以获得令人满意的整车电源综合性能。然后讨论了BDCM推进系统的恒功率运行问题。针对BDCM推进系统的短期功率管理和恒功率运行,提出了一种新的多功能DC-DC变换器拓扑结构。它具有电路简单、效率高、成本低等特点。分析了多功能DC-DC变换器的工作原理。重点研究了BDCM在不同工况下的再生制动控制方法。
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