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System Integrity Protection Scheme for Enhancing Backup Protection of Transmission Lines

机译:用于增强传输线备份保护的系统完整性保护方案

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摘要

Contingencies such as faults, loss of generation or load may produce undesirable relay operations which can lead to cascade tripping causing system catastrophic failure. Thus, security of power system protection is a major concern for utilities. In this article, an approach based on system integrity protection scheme is proposed for enhancing the security of protection functions. Synchronous data measurements from strategic portions in the system are utilized for separating fault from stressed conditions. Determining the vulnerable relays (VR) which may maloperate during a stressed condition and incorporation of remedial strategy are proposed. It includes two algorithms; the first of which computes the relay margin to form a look-up table containing VR at different fault scenario and operating condition, in offline studies. Then, in accordance with the real-time system conditions, the relay characteristics are set for VRs based on the local information to avoid maloperation. The second is activated during critical heavy loading condition that may lead to voltage collapse and determines the load to be shed based upon sensitivity calculations of relay operation margin. The proposed method is tested for an IEEE-39 bus New England system as well as validated on real-time digital simulator (RTDS) platform for various operating scenarios and found to be robust. Thus, improvement in security of protection operation is achieved without compromising the dependability factor.
机译:诸如故障,发电或负荷损失的突发事件可能产生不期望的继电器操作,这可能导致级联跳闸导致系统灾难性故障。因此,电力系统保护的安全性是公用事业的主要问题。在本文中,提出了一种基于系统完整性保护方案的方法,提升了保护功能的安全性。系统中战略部分的同步数据测量用于分离来自压力条件的故障。提出了在压力条件下可能恶性的易受伤害的继电器(VR)并掺入补救策略。它包括两个算法;其中首先计算中继余量,以在离线研究中形成包含VR的查找表,其中包含VR。然后,根据实时系统条件,基于本地信息为VRS设置中继特性以避免误操作。第二次在临界重载条件下被激活,这可能导致电压塌陷,并根据继电器操作边距的灵敏度计算确定要脱落的负载。建议的方法测试了IEEE-39总线新英格兰系统,并在实时数字模拟器(RTDS)平台上验证了各种操作场景,并发现是强大的。因此,在不影响可靠性因子的情况下实现保护操作的安全性的改进。

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