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首页> 外文期刊>Journal of Modern Power Systems and Clean Energy >Application of new directional logic to improve DC side fault discrimination for high resistance faults in HVDC grids
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Application of new directional logic to improve DC side fault discrimination for high resistance faults in HVDC grids

机译:新型定向逻辑在改善HVDC电网高阻故障的直流侧故障识别中的应用

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摘要

This paper proposes a simple and fast way to determine the direction of a fault in a multi-terminal high voltage direct current (HVDC) grid by comparing the rate of change of voltage (ROCOV) values at either side of the di/dt limiting inductors at the line terminals. A local measurement based secure and fast protection method is implemented by supervising a basic ROCOV relay with a directional element. This directional information is also used to develop a slower communication based DC line protection scheme for detecting high resistance faults. The proposed protection scheme is applied to a multi-level modular converter based three-terminal HVDC grid and its security and sensitivity are evaluated through electromagnetic transient simulations. A methodology to set the protection thresholds considering the constraints imposed by the breaker technology and communication delays is also presented. With properly designed di/dt limiting inductors, the ability of clearing any DC transmission system fault before fault currents exceeds a given breaker capacity is demonstrated.
机译:本文提出了一种通过比较di / dt限制电感器任一侧的电压变化率(ROCOV)值的变化率来确定多端子高压直流(HVDC)电网中故障方向的简便方法在线路终端。通过监督带有方向性元件的基本ROCOV继电器,可以实现基于本地测量的安全和快速保护方法。此方向信息还用于开发基于慢速通信的DC线路保护方案,以检测高阻故障。将该保护方案应用于基于三端高压直流输电的多级模块化变流器,并通过电磁暂态仿真评估其安全性和灵敏度。还提出了一种考虑断路器技术和通信延迟而设置保护阈值的方法。通过正确设计的di / dt限制电感器,可以证明在故障电流超过给定断路器容量之前清除任何直流输电系统故障的能力。

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