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Applying adaptive protection scheme to mitigate the impact of distributed generator on existing distribution network

机译:应用自适应保护方案减轻分布式发电机对现有配电网的影响

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Many studies indicate the importance of distributed generation (DG) as one of the best alternatives to conventional energy sources. The growth in population is causing a significant increase in electricity demand all over the world, which creating a considerable need for further investment in the electric network infrastructure. However, integration of new renewable energy source in the distribution network (DN) could impact the stability and the reliability of the distribution network if successful integration of renewable and distributed generation into the distribution network not achieved. Successful integration of distributed energy resources requires optimized control and planning for the network configuration which relies basically on the decentralized energy source management and protection system coordination. The aim of this study is to investigate the impact of utilizing DG on the performance of DN, especially on the over-current protective devices. Also, introducing a proposed adaptive protection scheme to mitigate the influence of DG penetration on the protection coordination by adding group setting, which exists in nowadays numerical protective relays, for different operating conditions such as islanding mode, and full MVA capacity of a DG. The simplified power system simulated in NEPLAN and ETAP packages represents Benghazi medium voltage distribution network. The simulation and results show the effectiveness of the proposed approach on the reliability and stability of the distribution network.
机译:许多研究表明,分布式发电(DG)作为传统能源的最佳替代品之一的重要性。人口的增长导致世界范围内电力需求的显着增加,这极大地需要对电网基础设施的进一步投资。但是,如果未成功将可再生能源和分布式发电成功集成到配电网络中,则将新的可再生能源整合到配电网络(DN)中可能会影响配电网络的稳定性和可靠性。成功地集成分布式能源需要对网络配置进行优化的控制和规划,这主要依赖于分散式能源管理和保护系统的协调。这项研究的目的是调查利用DG对DN性能的影响,尤其是对过电流保护装置的影响。此外,针对不同的运行条件(例如孤岛模式和DG的全部MVA容量),引入了一种建议的自适应保护方案,以通过添加组设置来减轻DG穿透对保护协调的影响,该组设置存在于当今的数字保护继电器中。 NEPLAN和ETAP软件包中模拟的简化电源系统代表了Benghazi中压配电网。仿真和结果表明,该方法对配电网的可靠性和稳定性是有效的。

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