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Current differential protection principle of HVDC transmission system

机译:高压直流输电系统的电流差动保护原理

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摘要

Traditional high-voltage DC (HVDC) current differential protection has problems on identifying fault current and has long delay. In this study, a novel current differential protection principle for HVDC transmission lines is proposed. By the adoption of distributed parameter model, differential current criterion is formed at a selected point on the transmission line. When fault occurs on DC line, setting point differential current reaches a high value. When no fault occurs or fault occurs outside the DC line, setting point differential current reaches a small value. Comparing with the traditional current differential protection, the proposed principle eliminates the impact of distributed capacitive current and has no requirement of delay. Comparing with travelling wave protection, fault identification can be performed during both transient and steady states, and the proposed method has reasonable sampling frequency requirements and has high reliability. Simulation analysis shows that the proposed principle identifies faults reliably and rapidly. The proposed principle is theoretically novel and practically applicable.
机译:传统的高压直流(HVDC)电流差动保护在识别故障电流时存在问题,并且具有较长的延迟。在这项研究中,提出了一种新颖的高压直流输电线路电流差动保护原理。通过采用分布参数模型,在传输线上的选定点形成差分电流准则。当直流线路发生故障时,设定点差动电流会达到较高的值。当没有故障发生或直流线路外部发生故障时,设定点差分电流将达到较小的值。与传统的电流差动保护相比,该原理消除了分布电容电流的影响,并且没有延迟的要求。与行波保护相比,该方法既可以在瞬态也可以在稳态下进行故障识别,并且该方法具有合理的采样频率要求,可靠性高。仿真分析表明,所提出的原理能够可靠,快速地识别故障。所提出的原理在理论上是新颖的,并且在实践中可以应用。

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