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Reduced semiconductor three-level interline dynamic voltage restorer

机译:减少半导体三级相互线动态电压恢复器

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The previously proposed Interline Dynamic Voltage Restorer (IDVR) system enhances its capability to compensate for long-term and deep voltage sags from propagating to critical loads in power system without requiring a bulky energy storage device. By having multiple DVRs connected to different transmission feeders, the common energy storage in IDVR system can be dynamically replenished from an unaffected feeder so as to maintain the rated power of critical loads in another feeder where voltage sag appears. However, despite its enhancement in compensation capability, the drawbacks faced by original IDVR system are mainly attributed to its complexity in topology and underutilizations of semiconductors. Aimed to improve the system in these aspects, the paper proposes a new IDVR topology with 25% reduction in semiconductors totally used. The theoretical analysis and its operating principles are also presented. In addition, some constraints faced by this new system are also noted. Finally, simulation results are given to validate the feasibility of proposed topology.
机译:先前提出的相互线动态电压恢复器(IDVR)系统增强了其能力,以补偿从发电系统中传播到临界负载的长期和深电压凹陷而不需要庞大的能量存储装置。通过将多个DVR连接到不同的传输馈线,可以从不受影响的馈线动态地补充IDVR系统中的公共能量存储,以便在出现电压凹陷的另一馈送器中保持临界负载的额定功率。然而,尽管有增强补偿能力,原始IDVR系统面临的缺点主要归因于其在半导体的拓扑和未充分利用中的复杂性。旨在改善这些方面的系统,本文提出了一种新的IDVR拓扑,全面使用25%的半导体减少。还提出了理论分析及其运营原则。此外,还指出了这种新系统面临的一些约束。最后,给出了仿真结果验证了所提出的拓扑的可行性。

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