Maintaining Fuse in the Presence of Distributed Generation Sources in the Distribution Network to Improve Protection System

Mahdi Taleb, B. Fani, G. Shahgholian, Amir H. Mosavi, Arman Fathollahi
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Abstract

The need to reduce greenhouse gas emissions and the high price of fossil fuels have made renewable resources attractive in energy-based economies around the world. Renewable energy sources will make up a significant part of the modern energy system in the future because they have promising potential. Many countries are already working to increase their capacity for renewable energy. The placement of renewable resources in power systems has gained significant attention due to their potential to provide power to distribution feeders or near consumers. However, the integration of these resources can have adverse effects on the distribution network, which necessitates their placement to be carefully considered. In this study, a novel method of coordinating protection devices based on the current control of distributed production sources using their current-voltage diagram during fault conditions is suggested. The proposed method aims to address the coordination and regulation problems encountered when integrating scattered resources into the network. To evaluate the effectiveness of our approach, we compare the impact of the presence of renewable sources at various points on the network during flooding. We conduct simulations using the ETAP software and present the obtained results. The proposed protection coordination method effectively mitigates the challenges of integrating renewable resources into the distribution network, providing a promising solution to support the transition towards a more sustainable energy future.
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配电网中分布式电源存在时,维护保险丝以改善保护系统
减少温室气体排放的需要和化石燃料的高价格使可再生资源在世界各地的能源导向型经济体中具有吸引力。可再生能源具有广阔的发展潜力,将在未来的现代能源体系中占据重要地位。许多国家已经在努力提高可再生能源的能力。在电力系统中放置可再生资源已经引起了极大的关注,因为它们有可能为配电馈线或附近的消费者提供电力。然而,这些资源的整合可能会对配电网产生不利影响,这就需要仔细考虑它们的位置。本文提出了一种基于故障状态下分布式生产源电流控制的协调保护装置的新方法。提出的方法旨在解决分散资源整合到网络中遇到的协调和监管问题。为了评估我们方法的有效性,我们比较了洪水期间可再生能源在网络上不同点的影响。利用ETAP软件进行了仿真,并给出了仿真结果。提出的保护协调方法有效地缓解了将可再生资源整合到配电网中的挑战,为支持向更可持续的能源未来过渡提供了一个有希望的解决方案。
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