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Research on the Relay Protection System for A Small Laboratory-scale Microgrid System

机译:小实验室规模微电网系统继电保护系统研究

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摘要

As one strategy of power management, microgrid has the special superiorities on not only improving power quality but also relieving the pressure on energy and environment. To carry out experiment and research, a small laboratory-scale microgrid system with energy storage device, single phase and three-phase photovoltaic devices and wind power devices are planned to build. Fault current in the microgrid system is limited by using of the distributed sources equipped by power electronic device. So the traditional relay no longer works. By determining the fault occurrence and fault zone according to bus bar voltage disturbances and power directions, the protection system can play an outstanding role in both grid-connected operation mode and islanded operation mode. The structure and control strategy of the microgrid experimental system and relay protection principle are described in this paper. Also, the relay protection system hardware and software have been designed based on industrial personal computer (IPC). Experimental results have shown that the protection system can operate safely according to requirements.
机译:作为一种电力管理策略,MicroGrid具有特殊的优越性,不仅提高了电力质量,而且还具有减轻能源和环境的压力。为了进行实验和研究,计划建立具有能量存储装置,单相和三相光伏器件和风力电动机的小型实验室微电网系统。微电网系统中的故障电流是通过使用电力电子设备配备的分布式源的限制。所以传统的继电器不再有效。通过根据汇流条电压干扰和电源方向确定故障发生和故障区域,保护系统可以在网格连接的操作模式和岛状操作模式下发挥出色作用。本文描述了微电网实验系统和继电器保护原理的结构和控制策略。此外,基于工业个人计算机(IPC)设计了继电器保护系统硬件和软件。实验结果表明,保护系统可根据要求安全运行。

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