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Enhanced loading ability of distribution system by concurrent AC-DC power transmission

机译:通过并发AC-DC功率传输增强配电系统的负载能力

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By fast increment in demand of electrical energy and for rapid progress of nation, specifically in big cities, the erection of new transmission corridors are excessive urgent. But the mission is limited by the deficiency of right-of-ways for new transmission corridors. This drawback, limits the transmission ability between power plant and load end. Centered on zigzag transformer, this paper offers a concurrent AC-DC power transmission arrangement, a new circuit topology, in the distribution network by overlaying DC power flow on existing AC line. The mixed DC and AC current and merged voltage is controlled below thermal limits and the insulation level of the line respectively. No variations of conductor size, insulator discs, breaker capacity and tower structure are needed. As circuit is near to the conductor thermal limit in the AC-DC system, the capacity of transmission line is considerably improved. Scheme of concurrent AC-DC power transmission system applied in the distribution network is put forward and the extreme of the whole power transmitted by the system is studied theoretically and numerically. Simulation is also supplied.
机译:随着电能需求的快速增长以及国家的快速发展,特别是在大城市,新传输通道的架设变得非常紧迫。但是,由于新传输通道的通行权不足,任务受到了限制。这个缺点限制了发电厂和负载端之间的传输能力。本文以之字形变压器为中心,通过在现有的交流线路上叠加直流电力流,在配电网络中提供了一种并发的交流-直流电力传输装置,一种新的电路拓扑。直流和交流混合电流和合并电压分别控制在热极限和线路的绝缘水平以下。无需改变导体尺寸,绝缘盘,断路器容量和塔架结构。由于电路接近AC-DC系统中的导体热极限,因此传输线的容量大大提高。提出了并网交流输电系统在配电网中的应用方案,并从理论和数值上研究了该系统输电总量的极值。还提供了仿真。

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