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Angular Modulation of Dual-Inverter Fed Open-End Motor for Electrical Vehicle Applications

机译:电动汽车用双逆变器馈入式开放式电动机的角度调制

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In this paper, angular modulation index (AMI) implemented through a modified space vector modulation for the dual voltage source inverters (VSI) is proposed with the primarily aiming to reduce switching losses. The desired voltage across the load is synthesized by applying appropriate phase-angle displacement between space vector references. The proposed approach avoids the use of a dc/dc boost converter (which imposes loss and weight/price penalty to duplicate the dc-link voltage) and results to be particularly suitable for electrical/hybrid vehicle applications. Namely, the application of saving energy to keep driving has been identified as major concern. Hence, this work focuses on the strategy to enhance efficiency. The principles of the proposed controlling method and switching loss, which is reduced at least by 50%, are theoretically evaluated. This paper proposes a pioneering mathematical approach to correctly determine total harmonic distortion (THD) value of the voltage/current for the dual-VSI structure. Furthermore, simulation and experimental results prove that the proposed method insures benefits in terms of common-mode voltage, THD of the voltage, and switching loss reduction. The dual-VSI prototype supplying 1.5-kW induction motor is assembled in the laboratory to experimentally evaluate performance of the proposed method. Also, the simulation results carried out through MATLAB/Simulink environment are given to confirm performance of this easy-to-implement and high-efficient method.
机译:本文提出了一种通过改进的空间矢量调制实现双电压源逆变器(VSI)的角度调制指数(AMI),其主要目的是减少开关损耗。通过在空间矢量参考之间施加适当的相角位移,可以合成负载两端的期望电压。所提出的方法避免了使用dc / dc升压转换器(这会增加损耗和重量/价格,以复制dc链路电压),并且其结果特别适合于电动/混合动力车辆应用。即,已经确认了节能以保持行驶的应用成为主要关注。因此,这项工作侧重于提高效率的策略。从理论上评估了所提出的控制方法的原理和至少减少了50%的开关损耗。本文提出了一种开创性的数学方法,可以为双VSI结构正确确定电压/电流的总谐波失真(THD)值。此外,仿真和实验结果证明,该方法在共模电压,电压的总谐波失真(THD)和降低开关损耗方面都具有优势。在实验室中组装了提供1.5 kW感应电动机的双VSI原型,以通过实验评估该方法的性能。此外,给出了通过MATLAB / Simulink环境执行的仿真结果,以确认这种易于实现且高效的方法的性能。

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