A ΓZ-source based hybrid power converter for battery-fuel cell hybrid electric vehicle

Jun Cai, Qing-Chang Zhong, D. Stone
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Abstract

Low cost and high reliability are the main issues considered in power converter design for hybrid electric vehicle. In this paper, a hybrid power converter is proposed for the power flow control of the battery-fuel cell hybrid electric vehicle. The converter consists of a unidirectional Γ Z-source converter and a bidirectional DC-DC converter. By controlling the voltage of the Z source capacitor and the modulation index of the inverter, the power flow between the fuel cell, battery and the load can be controlled flexibly. The different operation modes of the system and the power flow control strategies are analysed. To verify the validity of the proposed power converter topology and the control methods, system simulation model is developed in Matlab/Simulink environment. In addition, the simulation model is also implemented in the RT-LAB real-time simulator. The simulation results demonstrated the feasibility of the proposed methods.
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基于ΓZ-source的混合动力转换器,用于电池-燃料电池混合动力汽车
低成本和高可靠性是混合动力汽车电源转换器设计中要考虑的主要问题。针对电池-燃料电池混合动力汽车的潮流控制问题,提出了一种混合动力转换器。该变换器由单向Γ z源变换器和双向DC-DC变换器组成。通过控制Z源电容的电压和逆变器的调制指数,可以灵活地控制燃料电池、电池和负载之间的功率流。分析了系统的不同运行方式和潮流控制策略。为了验证所提出的功率变换器拓扑结构和控制方法的有效性,在Matlab/Simulink环境下建立了系统仿真模型。此外,仿真模型也在RT-LAB实时仿真器中实现。仿真结果验证了所提方法的可行性。
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