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Total Flux Minimization Control for Integrated Inter-Phase Inductors in Paralleled, Interleaved Three-Phase Two-Level Voltage-Source Converters With Discontinuous Space-Vector Modulation

机译:具有不连续空间矢量调制的并联,交错式三相两电平电压源转换器中集成相间电感的总通量最小化控制

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摘要

This paper presents a control method to minimize the total flux in the integrated interphase inductors of paralleled, interleaved three-phase two-level voltage-source converters (VSCs) using discontinuous space vector modulation (DPWM). Specifically, different inductor structures used to limit circulating currents are introduced and compared, and the structure and flux distribution of two types of integrated interphase inductors are analyzed in detail. Based on that, a control method to minimize the total flux in such integrated interphase inductor is proposed for a parallel converter system using interleaved DPWM. The method eliminates the circulating currents during the peak range of the converter output currents; hence the total flux is minimized and only determined by the system load requirements. This control method introduces very limited additional switching actions, which do not significantly affect the converter electrothermal design. Experimental results verify the analysis and the feasibility of the proposed control method.
机译:本文提出了一种控制方法,该方法使用不连续空间矢量调制(DPWM)来最小化并联,交错式三相两电平电压源转换器(VSC)的集成相间电感器中的总磁通。具体来说,介绍并比较了用于限制循环电流的不同电感器结构,并详细分析了两种类型的集成相间电感器的结构和磁通分布。在此基础上,针对采用交错式DPWM的并联变换器系统,提出了一种控制方法,以使这种集成式相间电感器中的总磁通最小。该方法消除了转换器输出电流峰值范围内的循环电流。因此,总磁通被最小化,并且仅由系统负载要求决定。这种控制方法引入了非常有限的附加开关动作,这些动作不会显着影响转换器的电热设计。实验结果验证了该控制方法的分析和可行性。

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