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农村电网多电源接入下的继电保护配合优化分析

Analysis of Relay Protection Coordination Optimization under Multi-Power Source Access in Rural Power Grids

  • 摘要: 近年来,农村地区分布式光伏、风电等可再生能源的大规模接入,使得传统单向辐射状供电模式转变为复杂的双向多向潮流,继电保护系统因此面临误动、拒动等技术挑战。本研究旨在解决农村电网多电源接入环境下的继电保护配合优化问题,建立了光伏发电、风力发电和传统电源的综合数学模型,提出基于改进粒子群算法的多目标保护配合优化方法,同时优化可靠性、选择性、快速性和经济性指标。仿真结果表明,多电源接入导致短路电流变化率达58.6%,保护范围变化31.5%,采用优化算法后保护配合成功率提升至95%以上,相比传统方法提高了18.7%。本研究为农村电网继电保护智能化配置提供了理论依据和技术方案,对促进分布式电源消纳和提高供电可靠性具有重要工程价值。

     

    Abstract: In recent years, the large-scale integration of renewable energy sources such as distributed photovoltaic and wind power in rural areas has transformed the traditional unidirectional radial power supply model into a more complex bidirectional and multidirectional power flow. This transformation poses technical challenges to relay protection systems, including maloperation and failure to operate. This study addresses the optimization of relay protection coordination in rural power grids with multiple power sources. A comprehensive mathematical model integrating photovoltaic, wind, and traditional power sources is developed. An improved particle swarm optimization-based multi-objective protection coordination optimization method is proposed, which also optimizes reliability, selectivity, speed, and economic efficiency.Simulation results show that with multi-source integration, the short-circuit current variation rate increased by 58.6% and the protection range changed by 31.5%. After applying the optimized algorithm, the success rate of protection coordination improved to over 95%, representing an 18.7% improvement compared with traditional methods. This study provides a theoretical basis and technical solution for the intelligent configuration of relay protection in rural power grids, with significant engineering value for promoting the integration of distributed power sources and enhancing power supply reliability.

     

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