首页> 外文会议>International Conference on High Voltage Engineering and Power Systems >Mitigation of Communication Failures on Line Current Differential Relays by adding Automatic Function Switching Logic to Improve Protection System Reliability, Study Case in PT PLN (Persero)
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Mitigation of Communication Failures on Line Current Differential Relays by adding Automatic Function Switching Logic to Improve Protection System Reliability, Study Case in PT PLN (Persero)

机译:通过添加自动功能切换逻辑来提高保护系统的可靠性,减轻线路电流差动继电器上的通信故障,这是PT PLN(Persero)中的案例

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Line current differential (LCD) relay is a kind of transmission line protection system which uses Kirchhoff Current Law as its fundamental principle. It compares measured current from two relays that installed on each substation. The two relays 'talk' to each other using certain communication media, e.g. optical fiber, pilot wire, etc. Communication is one of the important components that greatly determines the reliability of the LCD relay. Without proper communication media, this relay cannot work as a protection system. No matter how sophisticated the media is, sometimes experiences communication failure. And this condition is very risky because it can lead to widespread power outage if a system failure occurs on the related transmission line. Recently, many of our transmission lines are provided LCD relay as main protection, OCR/GFR as local backup protection, and Z2/Z3 Distance relay as remote backup protection. If there is system failure on the transmission line, LCD would trip instantaneously to shutting down the line. However, if a system failure occurs when LCD communication failure, LCD would be blocked and the line would be shutting down by remote backup which has delayed for fault clearing time. It can cause more impact such as widespread power outage or equipment damage. This paper deals how to provide instantaneous protection function while LCD blocked by communication failure. This paper shows the implementation of automatic function switching to activate Z1 distance function while communication failure detected. This Z1 would operate as main protection while LCD blocked and whenever occurs a system failure on the transmission line, this protection would detect and clear fault instantaneously. Thus, widespread power outage and equipment damaged can be avoided.
机译:线电流差动(LCD)继电器是一种以基尔霍夫电流定律为基本原理的传输线保护系统。它比较每个变电站上安装的两个继电器的测量电流。这两个中继站使用某些通信媒体(例如,光纤,控制线等。通信是决定LCD继电器可靠性的重要组成部分之一。如果没有适当的通讯介质,该继电器将无法用作保护系统。无论媒体多么复杂,有时都会遇到通信故障。这种情况非常危险,因为如果相关的传输线上发生系统故障,则可能导致广泛的停电。最近,我们的许多传输线都提供了LCD继电器作为主要保护,OCR / GFR作为本地备用保护以及Z2 / Z3距离继电器作为远程备用保护。如果传输线上发生系统故障,LCD将立即跳闸以关闭传输线。但是,如果在LCD通讯故障时发生系统故障,则LCD将被阻塞,并且将通过远程备份关闭线路,远程备份已延迟了清除时间。它可能会造成更大的影响,例如广泛的停电或设备损坏。本文探讨了在液晶屏被通讯故障阻塞时如何提供瞬时保护功能。本文介绍了在检测到通信故障时自动切换功能以激活Z1距离功能的实现。当LCD阻塞时,此Z1可用作主要保护,每当传输线上发生系统故障时,该保护都会立即检测并清除故障。因此,可以避免大范围的停电和设备损坏。

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