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Hardware-In-the-Loop Design and Optimal Setting of Adaptive Protection Schemes for Distribution Systems With Distributed Generation

机译:分布式发电的配电系统硬件在环设计和自适应保护方案的最优设置

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摘要

The constantly increasing presence of distributed generation (DG) in modern distribution systems induces grid configuration alterations, affecting thus the short-circuit levels and fault current paths. To address all arising protection challenges, adaptive protection is being implemented. This paper presents an innovative hardware-in-the-loop adaptive protection scheme, which incorporates real-time simulation, multifunction protection, centralized control, and optimal calculation of protection settings. The proposed adaptive scheme is based, first, on the determination of optimal relay setting groups, and then on their online self-adjustment, providing a continuously tuned protection scheme to the variable system operating modes. The efficacy of the proposed solution is demonstrated through two distribution test networks with embedded DG.
机译:在现代配电系统中,分布式发电(DG)的不断增加会引起电网配置的变化,从而影响短路水平和故障电流路径。为了应对所有出现的保护挑战,正在实施自适应保护。本文提出了一种创新的硬件在环自适应保护方案,该方案结合了实时仿真,多功能保护,集中控制和保护设置的最佳计算。所提出的自适应方案首先基于最佳继电器设置组的确定,然后基于其在线自我调节,从而为可变系统操作模式提供了连续调整的保护方案。通过具有嵌入式DG的两个分布测试网络证明了所提出解决方案的有效性。

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