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A dynamic objective function for communication-based relaying: Increasing the controllability of relays settings considering N-l contingencies

机译:基于通信的中继的动态目标函数:提高考虑N-L突发事件的继电器设置的可控性

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摘要

Considering different configurations of a protected network in relays coordination offers higher reliability, security, and sustainability. However, overcurrent relaying in N-1 contingency states stands as a complicated problem especially in interconnected sub-transmissions systems with distance relays. To overcome this challenge, the current paper proposes a coordination scheme in which dual setting directional overcurrent relays (D-DOCRs) and low bandwidth communication links are jointly deployed instead of conventional DOCRs. By doing so, more flexibility and extensibility is provided in the coordination process. Moreover, in order to direct the relays settings toward optimal solutions, a new dynamic objective function is devised. This approach strengthens the controllability of relay settings in different conditions by pulling the variables towards the feasible region. The proposed formulation considers both standard and non-standard relay characteristics and demonstrates a nonlinear programming fashion which is solved by chaotic particle swarm optimization algorithm. Results approve that D-DOCRs in conjunction with distance relays can successfully maintain a proper coordination in N-1 contingency states, supported by the proposed dynamic approach.
机译:考虑到中继协调中的受保护网络的不同配置提供了更高的可靠性,安全性和可持续性。然而,N-1次应急状态中的过电流中继作为一个复杂的问题,尤其是在具有距离继电器的互连子变速器系统中。为了克服这一挑战,目前的论文提出了一种协调方案,其中共同展开了双设定定向过电流继电器(D-DOCRS)和低带宽通信链路而不是传统的DOCRS。通过这样做,协调过程中提供了更大的灵活性和可扩展性。此外,为了将继电器设置指向最佳解决方案,设计了一种新的动态目标函数。通过将变量拉向可行区域将变量拉动,这种方法通过向可行区域拉动不同条件中的继电器环境的可控性。所提出的配方考虑了标准和非标准继电器特性,并通过混沌粒子群优化算法来阐述了非线性编程方式。结果批准,与距离继电器结合的D-DOCRS可以成功地维持在N-1次差异状态下的适当协调,由所提出的动态方法支持。

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