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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Impact of VSC Control Strategies and Incorporation of Synchronous Condensers on Distance Protection Under Unbalanced Faults
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Impact of VSC Control Strategies and Incorporation of Synchronous Condensers on Distance Protection Under Unbalanced Faults

机译:非平衡故障下VSC控制策略和并入同步冷凝器对距离保护的影响

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摘要

The short circuit response of a voltage source converter (VSC) under grid unbalanced faults mainly depends on the design of its control system. Due to the limited semiconductor overload capability, the short circuit current contributed by a VSC should be restricted within the limit for each phase. This might bring up challenges to the protection system of a converter-dominated power system. This paper derives a generic converter peak current limitation method for three different VSC control strategies. The impact of the control strategies and the combined impact of a VSC with a synchronous condenser on distance protection are evaluated using a commercial relay through hardware-in-the-loop (HIL) tests. Based on the test results, we propose to avoid using constant reactive power control strategy. It poses an adverse impact on the reliability and speed of distance protection regardless of the presence of a synchronous condenser at the point of common coupling, while constant active power and balanced current control strategies favor the performances of distance protection.
机译:电网不平衡故障下电压源转换器(VSC)的短路响应主要取决于其控制系统的设计。由于半导体过载能力的限制,应将VSC产生的短路电流限制在每个相的限制范围内。这可能给以转换器为主的电源系统的保护系统带来挑战。本文推导了针对三种不同VSC控制策略的通用转换器峰值电流限制方法。使用商用继电器通过硬件在环(HIL)测试,评估了控制策略的影响以及带同步电容器的VSC与同步电容器的综合影响。根据测试结果,我们建议避免使用恒定无功功率控制策略。无论在公共耦合点处是否存在同步电容器,都会对距离保护的可靠性和速度造成不利影响,而恒定的有功功率和平衡电流控制策略则有利于距离保护的性能。

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