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Micro Grid Architecture for Line Fault Detection and Isolation

机译:用于线路故障检测和隔离的微电网架构

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One of the major problems power grids system face today is the inability to continuously deliver power at the consumer side. The main reason for this is the occurrence of faults and its long term persistence within the system. This persistence of faults causes the cascading failure of the system, thereby adversely affecting the connected loads. Traditional methods of fault isolation cause the shutdown of power to a large area to maintain the system stability. Today, localization of faults and its isolation is doing manually. Therefore, a localized fault recovery mechanism is very essential to maintain the system's stability after the occurrence of a fault. In this paper, we have developed fast fault detection and isolation mechanism for single phase to neutral line fault in a three phase islanded micro grid scenario. The fault detection and isolation during the islanded operation mode of a micro grid is very critical, since bidirectional power flow is present. The fault detection mechanism we developed can detect and isolate the fault within a few milliseconds and localize the fault within a two second delay for both in single and bi-directional power flow scenarios. The proposed system is capable of locating the exact faulted segment with the aid of the communication network integrated into the power grid. The implemented system was tested with different ranges of fault current and the analysis showed that the proposed system could localize the fault with less than a two second delay.
机译:目前主要问题电网系统面部的一个是无法在消费方面不断提供电力。这是一个主要原因是在系统内发生故障及其长期持久性。这种故障的这种持久性导致系统的级联失败,从而对连接的负载产生不利影响。传统的故障隔离方法导致关闭电源到大面积以保持系统稳定性。今天,故障的本地化及其隔离是手动进行的。因此,局部故障恢复机制对于在发生故障发生后保持系统的稳定性是至关重要的。在本文中,我们在三相岛状微电网场景中开发了单相到中性线故障的快速故障检测和隔离机制。由于存在双向动力流,因此微网格的岛状操作模式期间的故障检测和隔离是非常关键的。我们开发的故障检测机制可以在几毫秒内检测和隔离故障,并在单个和双向功率流程中为两个秒延迟定位故障。所提出的系统能够借助于集成到电网的通信网络定位精确的断层段。通过不同的故障电流进行测试,分析显示所提出的系统可以通过小于两个延迟的故障定位故障。

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