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DC-Link Voltage Regulation of Bidirectional Quasi-Z-Source Inverter for Electric Vehicle Applications

机译:用于电动汽车应用的双向准Z源逆变器的DC-LINK电压调节

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摘要

In order to regulate the dc-link voltage and achieve the bidirectional power flow capability, a traction driving system with bidirectional quasi-Z-source inverter (BQ-ZSI) for electric vehicles (EV) is proposed in this paper. Based on analyzing the circuit structure and small signal model, oscillation of the dc-link voltage of BQ-ZSI could be caused when the disturbances on dc input voltage occur. By producing a dc-link voltage controller with a capacitor voltage feedback control in addition to dc input voltage and inductor current feed-forward compensation, the oscillation of the dc-link voltage and inductor current produces by the disturbance on dc input voltage can be suppressed. Simulation results show that EVs can be operated among startup, climbing, acceleration and regenerative braking modes with a stable dc-link voltage. The proposed control strategy can effectively stabilize the dc-link voltage of the BQ- ZSI traction driving system when the dc input voltage varies and the operation mode of EV changes.
机译:为了调节直流链路电压并实现双向动力流动性,本文提出了一种具有双向准Z源逆变器(BQ-ZSI)的牵引驱动系统(EV)。基于分析电路结构和小信号模型,在发生DC输入电压的干扰时,可能会导致BQ-ZSI的DC-Link电压的振荡。除了DC输入电压和电感器电流前馈补偿之外,通过产生具有电容器电压反馈控制的DC-Link电压控制器,可以抑制DC-Link电压和电感电流的振荡,可以通过DC输入电压的干扰产生。 。仿真结果表明,EVS可以在具有稳定的直流链路电压的启动,攀爬,加速度和再生制动模式之间进行操作。当DC输入电压变化并且EV变化的操作模式时,所提出的控制策略可以有效地稳定BQ-ZSI牵引驱动系统的直流链路电压。

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