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Alternate arm modular multilevel converter for HVDC systems

机译:用于HVDC系统的备用臂模块化多电平转换器

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The Modular Multilevel Converter (MMC) and Alternate Arm Modular Multilevel Converter are the emerging converter topologies which are most effective and suitable for HVDC systems. The AAMMC represents a hybrid multilevel converter topology with high capability for high voltage applications. One of the serious problems of the HVDC system is the blocking of DC side faults. The MMC can be used to limit the DC side fault current but the main disadvantage this converter it requires double number of submodules to switch in reverse voltage and has inability to produce negative voltage due to half bridge submodules. This paper represents the schematic and working principle of AAMMC which can be used to block the DC side faults. The control and modulation schemes are used for converter operation and shows better advantages for balancing the capacitor voltage across all submodules. The decoupled current control technique is used for DC link voltage control, active and reactive power control. Thus the converter provides the advantages such as lower number of submodules as compared to MMC which helps to minimize the size and volume of the converter station, DC fault tolerance property and generation of almost sinusoidal multistep harmonic free AC voltage. The simulation results for fault tolerant 21 level AAMMC are discussed and analyzed for active-reactive power control and DC link voltage control to demonstrate the effectiveness of the implemented system.
机译:模块化多电平转换器(MMC)和备用臂模块化多电平转换器是新兴转换器拓扑,最有效,适用于HVDC系统。 AAMMC表示具有高能力的混合多级转换器拓扑,用于高压应用。 HVDC系统的严重问题之一是堵塞直流侧断层。 MMC可用于限制直流侧故障电流,但是该转换器的主要缺点它需要双数量的子模块以切换反向电压,并且不能导致由于半桥子模块导致的负电压。本文代表了可用于阻断直流侧断层的AMBC的原理图和工作原理。控制和调制方案用于转换器操作,并显示出平衡所有子模块跨越电容器电压的更好优点。去耦电流控制技术用于直流链路电压控制,主动和无功功率控制。因此,与MMC相比,转换器提供了诸如较低数量的子模块中的优点,这有助于最小化转换器站的大小和体积,直流容错性和几乎正弦波的MultiSep谐波的产生。讨论和分析了用于有效无功控制和直流链路电压控制的容错21级αAMMC的仿真结果,以证明所实现系统的有效性。

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