Optimal coordination of directional overcurrent relays: A fast and precise quadratically constrained quadratic programming solution methodology

IF 2 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC Iet Generation Transmission & Distribution Pub Date : 2024-12-03 DOI:10.1049/gtd2.13329
Amir Hossein Poursaeed, Meysam Doostizadeh, Sina Hossein Beigi Fard, Amir Hossein Baharvand, Farhad Namdari
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Abstract

Nowadays, power system protection is increasingly important because of the growing number of customers and the pressing need for timely fault resolution and relay operations. This paper addresses the non-linear nature of the objective function in the optimal coordination of directional overcurrent relays (DOCRs) by employing a quadratic Taylor series expansion around an operating point, converting the problem into a quadratically constrained quadratic programming problem, ensuring a global optimal solution with increased computational efficiency. Additionally, the quadratic constraints are converted into second-order cone constraints for compatibility with the CPLEX solver. Using the least square method, the operating point values are determined and further fine-tuned using iterations with the DOCR operation times. The IEEE 3-bus, IEEE 8-bus, and IEEE 14-bus test systems are used to test the method, which shows higher improvement rates in reducing DOCR operation times and enhancing cooperation than conventional and metaheuristic methods. The simulation results verify the numerical superiority of the method in optimizing the protection system's efficiency while obtaining rapid and accurate solutions. The proposed method was tested on IEEE 3-bus, 8-bus, and 14-bus systems, optimizing relay operating times to 0.87, 2.96, and 7.05 s, respectively, demonstrating the method's efficiency over conventional approaches.

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定向过流继电器的最优协调:一种快速精确的二次约束二次规划求解方法
如今,由于用户数量的不断增加以及对故障及时解决和继电保护操作的迫切需求,电力系统保护变得越来越重要。针对定向过流继电器(DOCRs)优化协调中目标函数的非线性性质,采用围绕工作点的二次泰勒级数展开,将问题转化为二次约束的二次规划问题,保证了全局最优解,提高了计算效率。此外,为了与CPLEX求解器兼容,将二次约束转换为二阶锥约束。使用最小二乘法,确定作用点值,并使用与DOCR操作时间的迭代进一步微调。采用ieee3总线、ieee8总线和ieee14总线测试系统对该方法进行了测试,结果表明该方法在减少DOCR操作次数和增强协作性方面比传统方法和元启发式方法有更高的改进率。仿真结果验证了该方法在优化保护系统效率的同时获得快速、准确的解的数值优势。该方法在IEEE 3总线、8总线和14总线系统上进行了测试,分别将继电器的运行时间优化到0.87、2.96和7.05 s,证明了该方法比传统方法的效率。
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来源期刊
Iet Generation Transmission & Distribution
Iet Generation Transmission & Distribution 工程技术-工程:电子与电气
CiteScore
6.10
自引率
12.00%
发文量
301
审稿时长
5.4 months
期刊介绍: IET Generation, Transmission & Distribution is intended as a forum for the publication and discussion of current practice and future developments in electric power generation, transmission and distribution. Practical papers in which examples of good present practice can be described and disseminated are particularly sought. Papers of high technical merit relying on mathematical arguments and computation will be considered, but authors are asked to relegate, as far as possible, the details of analysis to an appendix. The scope of IET Generation, Transmission & Distribution includes the following: Design of transmission and distribution systems Operation and control of power generation Power system management, planning and economics Power system operation, protection and control Power system measurement and modelling Computer applications and computational intelligence in power flexible AC or DC transmission systems Special Issues. Current Call for papers: Next Generation of Synchrophasor-based Power System Monitoring, Operation and Control - https://digital-library.theiet.org/files/IET_GTD_CFP_NGSPSMOC.pdf
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