Dynamic State Estimation for Radial Microgrid Protection

A. Barnes, Adam Mate
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引用次数: 6

Abstract

Microgrids are localized electrical grids with control capability that are able to disconnect from the traditional grid to operate autonomously. They strengthen grid resilience, help mitigate grid disturbances, and support a flexible grid by enabling the integration of distributed energy resources. Given the likely presence of critical loads, the proper protection of microgrids is of vital importance; however, this is complicated in the case of inverter-interfaced microgrids where low fault currents preclude the use of conventional time-overcurrent protection. This paper introduces and investigates the application of dynamic state estimation, a generalization of differential protection, for the protection of radial portions of microgrids (or distribution networks); both phasor-based and dynamic approaches are investigated for protection. It is demonstrated through experiments on three case-study systems that dynamic state estimation is capable of correctly identifying model parameters for both normal and faulted operation.
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径向微电网保护的动态估计
微电网是具有控制能力的局部电网,能够脱离传统电网自主运行。它们增强了电网的弹性,有助于减轻电网干扰,并通过实现分布式能源的集成来支持灵活的电网。鉴于可能存在临界负荷,对微电网的适当保护至关重要;然而,这在逆变器接口微电网的情况下是复杂的,其中低故障电流排除了使用传统的时间过流保护。本文介绍并研究了差动保护的推广——动态估计在微电网(或配电网)径向部分保护中的应用;研究了基于相量的保护方法和动态保护方法。通过三个实例系统的实验证明,动态状态估计能够正确识别正常和故障运行的模型参数。
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