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Circulating Current Reduction in MMC-HVDC System Using Average Model

机译:使用平均模型循环电流降低MMC-HVDC系统

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摘要

Modular multilevel converters (MMCs) are quickly emerging as a suitable technology for a voltage-source converter-based high-voltage direct-current (VSC-HVDC) transmission systems due to its numerous advantages as reported in literature. However, for a large DC-network, MMCs require large numbers of sub-modules (SMs) and switches, which makes its modeling very challenging and computationally complex using electromagnetic transient (EMT) programs. Average Value Model (AVM) provides a relatively better solution to model MMCs by combining cells as an arm equivalent circuit. Circulating current is an important issue related to the performance and stability of MMCs. Due to circulating currents, power loss in a converter increases as root mean square (RMS) values of the arm current increases. The traditional method for inserting SMs in each arm is based on direct modulation, which does not compensate for the arm voltage oscillations, and generates circulating current in each leg of a three-phase MMC. This paper presents a new method for reducing the circulating current by adding 2nd and 4th harmonics in the upper and lower arm currents of an MMC. Less capacitor energy variations are obtained by the proposed method compared to traditional direct modulation methods. The proposed method is tested on a common symmetrical monopole (point-to-point) MMC-HVDC system using vector current control strategy in PSCAD/EMTDC software. Analytical and simulation results show the effectiveness of the new method in minimizing the circulating current and arm voltage oscillation reductions as compared to the direct modulation approach.
机译:模块化多电平转换器(MMC)由于其在文献中报道的许多优点而快速地作为基于电压源转换器的高压直流(VSC-HVDC)传输系统的合适技术。然而,对于大型直流网络,MMCS需要大量的子模块(SMS)和开关,这使得使用电磁瞬态(EMT)程序来实现非常具有挑战性和计算的复杂性。平均值模型(AVM)通过将电池作为ARM等效电路组合来提供对模型MMC的相对更好的解决方案。循环目前是与MMC的性能和稳定性相关的重要问题。由于循环电流,转换器中的功率损耗随着臂电流的均方格(RMS)增加而增加。在每个臂中插入SMS的传统方法是基于直接调制,其不补偿臂电压振荡,并在三相MMC的每个腿中产生循环电流。本文提出了一种通过在MMC的上部和下臂电流中添加第二和第4次谐波来减小循环电流的新方法。与传统的直接调制方法相比,通过所提出的方法获得较少的电容器能量变化。在PSCAD / EMTDC软件中使用矢量电流控制策略在公共对称单极(点对点)MMC-HVDC系统上进行测试。与直接调制方法相比,分析和仿真结果表明了新方法最小化循环电流和臂电压振荡减少的有效性。

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