Dadfar Sajjad, Gandomkar Majid
Department of Electrical Engineering, College of Electrical Engineering and Computer, Saveh Branch, Islamic Azad University, Saveh, Iran.
ISA Trans. 2021 Aug;114:15-30. doi: 10.1016/j.isatra.2020.12.022. Epub 2020 Dec 13.
Satisfying coordination constraints among protective devices is a challenging task in the protection system of electrical grids. On the other hand, increasing interest on the distributed generations (DGs) jeopardizes the selectivity among overcurrent relays in active distribution networks. Therefore, sustainable electrification requires enhancing the protection coordination index (PCI) in order to increase DG penetration in these networks. In this paper, time-current-voltage characteristics and dual-setting directional overcurrent relays (DOCRs) are jointly employed to improve PCI in interconnected distribution networks. Dual-setting relays can operate in forward and reverse directions with individual settings in both directions which help to provide more flexibility in improving PCI. Moreover, the time-current-voltage characteristics have the voltage parameter in operation time of relays which can simplify the optimization process to yield higher flexibility in the coordination process. Furthermore, the proposed protection scheme is extended by user-defined time-current-voltage characteristics to improve PCI as much as possible. The proposed scheme is formulated as a nonlinear programming model that is solved by the genetic algorithm (GA). The proposed scheme is tested on IEEE 14-bus and 30-bus testbed. Results show a remarkable improvement.
在电网保护系统中,满足保护装置之间的协调约束是一项具有挑战性的任务。另一方面,对分布式发电(DG)的兴趣日益增加,这危及了有源配电网中过电流继电器之间的选择性。因此,可持续电气化需要提高保护协调指标(PCI),以增加DG在这些网络中的渗透率。在本文中,时间-电流-电压特性和双设定方向过电流继电器(DOCR)被联合用于提高互联配电网中的PCI。双设定继电器可以在正向和反向以两个方向的单独设定进行操作,这有助于在提高PCI方面提供更大的灵活性。此外,时间-电流-电压特性在继电器的动作时间中具有电压参数,这可以简化优化过程,从而在协调过程中产生更高的灵活性。此外,所提出的保护方案通过用户定义的时间-电流-电压特性进行扩展,以尽可能提高PCI。所提出的方案被表述为一个非线性规划模型,并通过遗传算法(GA)求解。该方案在IEEE 14节点和30节点测试平台上进行了测试。结果显示有显著改善。