Microgrid Protection: A Case Study of a Real-World Industry-Grade Microgrid

Carissa Cavalieri, V.I. Farias, Mahmoud Kabalan
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Abstract

Microgrids are small-scale electric energy systems that operate in parallel with the main grid (grid-connected mode) or completely isolated (island mode) and can seamlessly transition between both modes. The design of protection systems for microgrids can be challenging due to changing operating conditions and system topology. Grid-connected and island modes yield different fault current magnitudes and directions. This paper presents a case study of a protection and relaying scheme of an industry-grade real-world microgrid. Mathematical analysis and simulations were completed to quantify the magnitudes and directions of the fault currents in grid-connected and island modes. Other protective elements such as sync checks and under/over voltage were utilized to ensure smooth operation. Using industry-grade relays, a protection scheme was developed to ensure proper operation.
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微电网保护:现实世界工业级微电网的案例研究
微电网是与主电网并行(并网模式)或完全隔离(孤岛模式)运行的小型电力系统,可以在两种模式之间无缝过渡。由于运行条件和系统拓扑结构的变化,微电网保护系统的设计具有挑战性。并网模式和孤岛模式产生不同的断层电流大小和方向。本文介绍了一个工业级微电网保护和继电保护方案的实例研究。通过数学分析和仿真,量化了并网模式和孤岛模式下的故障电流的大小和方向。其他保护元件,如同步检查和欠/过电压,用于确保平稳运行。采用工业级继电器,制定了保护方案,以确保正常运行。
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