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Traveling Wave-Based Protection Scheme for Inverter-Dominated Microgrid Using Mathematical Morphology

机译:基于数学形态学的基于逆变器的微电网行波保护方案

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摘要

Inverter-dominated microgrids impose significant challenges on the distribution network, as inverters are well known for their limited contribution to fault current, undermining the performance of traditional overcurrent protection schemes. This paper introduces a new protection scheme based on the initial current traveling wave utilizing an improved mathematical morphology (MM) technology, with simplified polarity detection and new logics introduced for meshed networks and feeders with single-end measurement. The proposed protection scheme provides ultrafast response and can be adapted to varied system operational modes, topologies, fault conditions, and load conditions. Only low-bandwidth communication is required to achieve high-speed operation and adequate discrimination level in meshed networks. Simulation in PSCAD/EMTDC verifies both the sensitivity and stability of the proposed protection scheme under different microgrid operational scenarios.
机译:逆变器为主的微电网对配电网络提出了重大挑战,因为逆变器因其对故障电流的有限贡献而闻名,从而破坏了传统过流保护方案的性能。本文介绍了一种基于初始电流行波的新型保护方案,该方案采用了改进的数学形态学(MM)技术,并简化了极性检测,并为单端测量的网状网络和馈线引入了新的逻辑。所提出的保护方案可提供超快速响应,并且可以适应各种系统操作模式,拓扑,故障情况和负载情况。在网状网络中,仅需要低带宽通信即可实现高速操作和足够的区分度。 PSCAD / EMTDC中的仿真验证了所提出的保护方案在不同微电网运行情况下的敏感性和稳定性。

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