A high-level framework for implementation and test of IEC 61850-based microgrid power management systems

K. Gray, J. Kumm, J. Mraz
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引用次数: 2

Abstract

A North American oil refinery recently improved on-site power system reliability by extensively modifying the inplant electric system. Simultaneously, the refinery upgraded protective relaying to support IEC 61850 GOOSE messaging. New load caused a generation deficit when islanded from the local utility. The project team implemented a power management system to preserve critical loads when the refinery microgrid is islanded from the utility. The power management controllers use IEC 61850 GOOSE messaging. The project team performed thorough hardware-in-the-loop testing using a Real Time Digital Simulator (RTDS) along with traditional protection test-set testing to validate system operation for designed transitions and anticipated equipment failure modes. In studying these projects, we have developed a framework, which this paper shares, for successfully implementing other, similar microgrid power management system projects.
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基于IEC 61850的微电网电源管理系统实施和测试的高级框架
最近,一家北美炼油厂通过对工厂内电力系统进行大规模改造,提高了现场电力系统的可靠性。同时,炼油厂升级了保护继电器以支持IEC 61850 GOOSE消息传递。当新负荷与当地公用事业隔绝时,会造成发电赤字。项目团队实施了一个电源管理系统,以在炼油厂微电网与公用事业隔离时保持关键负载。电源管理控制器使用IEC 61850 GOOSE消息传递。项目团队使用实时数字模拟器(RTDS)和传统的保护测试集进行了全面的硬件在环测试,以验证系统在设计转换和预期设备故障模式下的运行情况。在研究这些项目的过程中,我们开发了一个框架,本文将其共享,以成功实施其他类似的微电网电源管理系统项目。
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