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Analysis of coupling effect on LCC-MCC hybrid HVDC from parallel AC lines in close proximity

机译:近距离平行交流管线LCC-MCC杂交HVDC耦合效应分析

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As the demand for electric power grows continuously, there are more AC and DC lines sharing the same corridor because of economic and ecological reasons. One of the problems is the induced fundamental frequency voltages and consequent circulating current on the DC lines by the coupled parallel AC lines. The LCC-MMC hybrid transmission system is quite suitable to transmit bulk power over long distance with overhead lines, which has many advantages over conventional HVDC topology. In the stage of planning a new hybrid system, comprehensive study need to be carried out on the possible coupling effect from the nearby AC lines. However, unlike LCC and VSC, the research is limited on the characteristic of MMC converters under fundamental frequency voltage from DC side. This paper proposes a computational efficient method to study the coupling effect on LCC-MMC hybrid system from the parallel AC lines. The MMC inverter and LCC rectifier are represented by equivalent models. The coupled line model is adopted to calculate the impedance and admittance matrixes of the transmission lines. A typical case is chosen to illustrate the calculation results. The induced voltage and circulating current on LCC and MMC sides are carefully studied based on the chosen case.
机译:随着对电力的需求不断增长,由于经济和生态学,还有更多的AC和DC线路共享相同的走廊。其中一个问题是通过耦合的并行交流线路诱导的基波频率电压和随后的DC线路循环电流。 LCC-MMC混合传动系统非常适合于用架空线传输大距离,与传统HVDC拓扑相比具有许多优点。在规划新的混合系统的阶段,需要在附近AC线路的可能耦合效果上进行综合研究。然而,与LCC和VSC不同,该研究限于MMC转换器在DC侧的基频电压下的特性。本文提出了一种计算有效方法,用于研究来自平行交流线LCC-MMC混合系统的耦合效果。 MMC逆变器和LCC整流器由等效模型表示。采用耦合线模型来计算传输线的阻抗和导纳矩阵。选择典型的案例以说明计算结果。基于所选择的情况,小心地研究LCC和MMC侧面上的感应电压和循环电流。

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