基于一个换向电路的廉价三相系统短路电流限制器和开关装置

A. R. Ahmed, Abdallah M. Hamada, Saady Hasan, K. M. Abdel-Latif
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引用次数: 0

摘要

短路导致的故障电流水平不断上升,尤其是在配电发电机中,这就迫切需要在电力系统中广泛采用故障电流限制器(FCL)。尽管故障限流器具有明显的优势,但其高昂的生产成本阻碍了故障限流器的广泛应用。为应对这一挑战,我们开展了一项综合研究,以开发一种专为三相电力系统量身定制的高性价比 FCL。本文提出了一种基于 FCL 单换向电路的新方法,并详细介绍了 FCL 电路的构造,尤其侧重于高效电流中断。此外,该研究还全面讨论了逻辑控制器和测量系统与拟议的 FCL 的结合使用,以确保精确的故障检测和对电网内的干扰做出快速反应。在 FCL 设计中集成了人工过零电路,进一步增强了其主动限制短路电流的能力,甚至在第一个峰值出现之前就能限制短路电流,从而提高了整个系统的可靠性和稳定性。这项研究的重要贡献在于通过简化 FCL 的设计实现了成本效益,从而无需对各种网络组件进行大规模升级。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inexpensive short-circuit current limiter and switching device based on one commutation circuit for a three-phase system
The escalating levels of fault currents resulting from short circuits, particularly in the context of distribution generators, have presented a critical need for the widespread implementation of fault current limiters (FCLs) in power systems. Despite their evident advantages, the extensive adoption of FCLs has been hindered by the high production costs associated with these devices. To address this challenge, a comprehensive study was conducted to develop a cost-effective FCL tailored specifically for three-phase power systems. This paper proposes a novel approach based on a single commutation circuit for the FCL and offers detailed insights into the construction of the FCL circuit, with a particular focus on efficient current interruption. Additionally, the study comprehensively discusses the logic controller and measurement system employed in conjunction with the proposed FCL, ensuring precise fault detection and rapid response to disturbances within the power grid. The integration of an artificial zero-crossing circuit within the FCL design further enhances its capability to limit short-circuit currents proactively, even before the occurrence of the first peak, thereby bolstering overall system reliability and stability. The study's significant contribution lies in achieving cost-effectiveness through the simplicity of the FCL's design, eliminating the need for extensive upgrades to various network components.
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