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An Active-Passive Capacitor-Commutated Converter for HVDC Systems with a Three-Phase Voltage-Source PWM Converter

机译:用于带有三相电压源PWM转换器的HVDC系统的有源-无源电容器换流转换器

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This paper introduces a new approach to the capacitor-commutated converters (CCCs) for HVDC systems. A small-rated three-phase voltage-source PWM converter is connected between a series commutation capacitor and thyristor converter through matching transformers. The PWM converter acts as auxiliary commutation-capacitor for the thyristor converter while the series passive capacitor acts as the main commutation capacitor. The capacitance, which is the sum of the small-rated active and series passive capacitors, is variable, so that stable commutation is obtained. In CCCs, commutation failure occurs when the AC bus voltage is recovered whereas the proposed combined commutation-capacitor can achieve successful commutation for both rapidly decreasing and increasing AC bus voltages. The basic principle of the proposed active-passive capacitor-commutated converter is discussed in detail. Then, constant margin angle control with a constant firing angle of the thyristor converter is proposed using a function generator block. Digital simulation demonstrates the novelty and effectiveness of the proposed active-passive capacitor-commutated converter.
机译:本文介绍了一种用于HVDC系统的电容器换流转换器(CCC)的新方法。小型三相电压源PWM转换器通过匹配的变压器连接在串联换向电容器和晶闸管转换器之间。 PWM转换器充当晶闸管转换器的辅助换向电容器,而串联无源电容器充当主换向电容器。容量是小容量有源电容器和串联无源电容器之和,因此可变,因此可获得稳定的换向。在CCC中,当AC总线电压恢复时发生换向失败,而提出的组合换相电容器可以在快速降低和增加AC总线电压的情况下实现成功的换向。详细讨论了所提出的有源-无源电容器换相转换器的基本原理。然后,提出了使用函数发生器模块以恒定的晶闸管变换器的触发角来控制恒定余量角的方法。数字仿真证明了所提出的有源-无源电容器换相转换器的新颖性和有效性。

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