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Optimization of Resistive Type Superconducting Fault Current Limiter and Circuit Breaker in Hybrid HVDC Transmission System

机译:混合HVDC传输系统电阻式超导故障电流限制器和断路器的优化

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摘要

To more efficiently deal with the DC fault problem of a hybrid HVDC transmission system, this paper puts forward a collaborative optimization of resistive type superconducting fault current limiter (SFCL) and DC circuit breaker (DCCB). A multiobjective function is constructed to collaboratively optimize the SFCL resistance and the breaking capability of the DCCB, and the elitist non-dominated sorting genetic algorithm is applied to achieve the Pareto solution set. In this study, a 320 kV hybrid HVDC transmission system is selected to test the performance of the proposed optimization approach. In terms of the optimization results, the DC fault current could be effectively limited and interrupted using the minimal size of the SFCL and the DCCB. The applicability and feasibility of the proposed collaborative optimization approach are well verified.
机译:为了更有效地处理混合HVDC传输系统的直流故障问题,本文提出了电阻型超导故障电流限制器(SFCL)和DC断路器(DCCB)的协同优化。构造多目标函数以协作优化DCCB的SFCL电阻和断裂能力,并且施加精油非主导分类遗传算法以实现帕累托解决方案集。在本研究中,选择了320kV混合HVDC传输系统以测试所提出的优化方法的性能。就优化结果而言,DC故障电流可以使用SFCL和DCCB的最小尺寸有效地限制和中断。拟议的协作优化方法的适用性和可行性得到了很好的验证。

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