Khan Muhammad Waleed, Muhammad Yasir, Raja Muhammad Asif Zahoor, Ullah Farman, Chaudhary Naveed Ishtiaq, He Yigang
Department of Electrical and Computer Engineering, COMSATS University Islamabad, Attock 22060, Pakistan.
Future Technology Research Center, National Yunlin University of Science and Technology, 123 University Road, Section 3, Douliou, Yunlin 64002, Taiwan.
Entropy (Basel). 2020 Oct 1;22(10):1112. doi: 10.3390/e22101112.
Optimal Reactive Power Dispatch (ORPD) is the vital concern of network operators in the planning and management of electrical systems to reduce the real and reactive losses of the transmission and distribution system in order to augment the overall efficiency of the electrical network. The principle objective of the ORPD problem is to explore the best setting of decision variables such as rating of the shunt capacitors, output voltage of the generators and tap setting of the transformers in order to diminish the line loss, and improve the voltage profile index (VPI) and operating cost minimization of standard electrical systems while keeping the variables within the allowable limits. This research study demonstrates a compelling transformative approach for resolving ORPD problems faced by the operators through exploiting the strength of the meta-heuristic optimization model based on a new fractional swarming strategy, namely fractional order (FO)-particle swarm optimization (PSO), with consideration of the entropy metric in the velocity update mechanism. To perceive ORPD for standard 30 and 57-bus networks, the complex nonlinear objective functions, including minimization of the system, VPI improvement and operating cost minimization, are constructed with emphasis on efficacy enhancement of the overall electrical system. Assessment of the results show that the proposed FO-PSO with entropy metric performs better than the other state of the art algorithms by means of improvement in VPI, operating cost and line loss minimization. The statistical outcomes in terms of quantile-quantile illustrations, probability plots, cumulative distribution function, box plots, histograms and minimum fitness evaluation in a set of autonomous trials validate the capability of the proposed optimization scheme and exhibit sufficiency and also vigor in resolving ORPD problems.
最优无功功率调度(ORPD)是电力系统规划和管理中网络运营商至关重要的关注点,旨在降低输配电系统的有功和无功损耗,以提高电网的整体效率。ORPD问题的主要目标是探索诸如并联电容器额定值、发电机输出电压和变压器分接头设置等决策变量的最佳设置,以减少线路损耗,改善电压分布指标(VPI)并使标准电力系统的运营成本最小化,同时将变量保持在允许范围内。本研究通过利用基于新的分数群策略的元启发式优化模型,即分数阶(FO)-粒子群优化(PSO)的优势,并在速度更新机制中考虑熵度量,展示了一种引人注目的变革性方法来解决运营商面临的ORPD问题。为了理解标准30和57节点网络的ORPD,构建了复杂的非线性目标函数,包括系统最小化、VPI改善和运营成本最小化,重点是提高整个电力系统的效率。结果评估表明,所提出的带有熵度量的FO-PSO在VPI改善、运营成本和线路损耗最小化方面比其他现有算法表现更好。在一组独立试验中的分位数-分位数图示、概率图、累积分布函数、箱线图、直方图和最小适应度评估等统计结果验证了所提出优化方案的能力,并展示了其在解决ORPD问题方面的充分性和活力。