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A Self-Healing Strategy for Modern Distribution Networks

机译:现代配电网络的自我修复策略

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Electrical distribution companies have been investing in modernizing their structures, especially operation automation. The integration of information technologies and communications makes fast power restoration during fault events, providing better profit to companies and a more reliable and safe distribution network for customers. A self-healing strategy can be implemented for protection and control devices to work cooperatively, achieving the global purpose of automatic distribution system restoration. Thus, this work proposes a methodology for short-circuit fault detection, isolation of the faulted section, and restoration of downstream sections using neighbor feeders. The protection devices use standardized IEC and ANSI/IEEE functions to sensitize faults in the system and to promote adequate isolation, allowing the consequent restorative process. A genetic algorithm optimizes the devices' parameters used in the protection scheme, making fastest the isolation process and ensuring the protection system coordination and selectivity. Results obtained using Simulink (R) allows for verifying the proposed methodology's behavior and efficiency.
机译:配电公司一直在投资对其结构进行现代化改造,尤其是操作自动化。信息技术和通信的集成使故障事件时的电力快速恢复,为公司提供更好的利润,为客户提供更可靠、更安全的配电网络。可以实施自我修复策略,使保护和控制设备协同工作,从而实现自动分配系统恢复的全球目的。因此,本文提出了一种利用相邻馈线进行短路故障检测、断层隔离和下游段恢复的方法。保护器件使用标准化的IEC和ANSI/IEEE功能来敏感化系统中的故障,并促进充分的隔离,从而实现随后的恢复过程。遗传算法优化了保护方案中使用的器件参数,使隔离过程最快,保证了保护系统的协调性和选择性。使用 Simulink (R) 获得的结果可以验证所提出方法的行为和效率。

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