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在分布式发电环境下,利用模糊蒙特卡洛不确定性分析提高双设定值方向过电流继电器的协调效率

Enhancing Coordination Efficiency with Fuzzy Monte Carlo Uncertainty Analysis for Dual-Setting Directional Overcurrent Relays Amid Distributed Generation.

作者信息

Al-Bhadely Faraj, İnan Aslan

机构信息

Department of Electrical Engineering, Yildiz Technical University, Istanbul 34220, Turkey.

出版信息

Sensors (Basel). 2024 Jun 25;24(13):4109. doi: 10.3390/s24134109.

Abstract

In the contemporary context of power network protection, acknowledging uncertainties in safeguarding recent power networks integrated with distributed generation (DG) is imperative to uphold the dependability, security, and efficiency of the grid amid the escalating integration of renewable energy sources and evolving operational conditions. This study delves into the optimization of relay settings within distribution networks, presenting a novel approach aimed at augmenting coordination while accounting for the dynamic presence of DG resources and the uncertainties inherent in their generation outputs and load consumption-factors previously overlooked in existing research. Departing from conventional methodologies, the study proposes a dual-setting characteristic for directional overcurrent relays (DOCRs). Initially, a meticulous modeling of a power network featuring distributed generation is undertaken, integrating Weibull probability functions for each resource to capture their probabilistic behavior. Subsequently, the second stage employs the fuzzy Monte Carlo method to address generation and consumption uncertainties. The optimization conundrum is addressed using the ant lion optimizer (ALO) algorithm in the MATLAB environment. This thorough analysis was conducted on IEEE 14-bus and IEEE 30-bus power distribution systems, showcasing a notable reduction in the total DOCR operating time compared to conventional characteristics. The proposed characteristic not only achieves resilient coordination across a spectrum of uncertainties in both distributed generation outputs and load consumption, but also strengthens the resilience of distribution networks overall.

摘要

在当前电网保护的背景下,认识到在保护与分布式发电(DG)集成的现代电网时存在的不确定性,对于在可再生能源集成不断增加和运行条件不断变化的情况下维持电网的可靠性、安全性和效率至关重要。本研究深入探讨了配电网中继设置的优化问题,提出了一种新颖的方法,旨在加强协调,同时考虑DG资源的动态存在及其发电输出和负荷消耗中固有的不确定性——这些因素在现有研究中此前一直被忽视。与传统方法不同,该研究为方向过电流继电器(DOCR)提出了一种双设置特性。首先,对具有分布式发电的电网进行了细致建模,为每个资源集成威布尔概率函数以捕捉其概率行为。随后,第二阶段采用模糊蒙特卡罗方法来处理发电和消耗的不确定性。在MATLAB环境中使用蚁狮优化器(ALO)算法解决了优化难题。该深入分析在IEEE 14节点和IEEE 30节点配电系统上进行,结果表明与传统特性相比,DOCR的总运行时间显著减少。所提出的特性不仅在分布式发电输出和负荷消耗的一系列不确定性中实现了弹性协调,还整体增强了配电网的弹性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/454c/11243921/09c57441a4c8/sensors-24-04109-g001.jpg

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