用启发式方法对实际配电变电所各DG机组的位置和尺寸进行优化

IF 0.8 4区 工程技术 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Merlin Sajini M.L., S. S, M. S.
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引用次数: 0

摘要

本研究的目的是在径向输送框架下进行分布式发电规划,以确定一个合适的地点,并配备合适的可再生能源发电机组,以减少电力损失并恢复电压水平。虽然已经提出了几种以降低功率损耗和增强电压稳定性为目标的算法,但通过将启发式算法如DE和粒子群优化(PSO)相结合,改进了目标的进一步优化。设计/方法/途径采用差分进化(DE)和粒子群算法相结合的方法确定DG单元的位置和DG单元的最佳额定值。在遗传算法和粒子群算法的组合策略中,结合了两种算法的关键优点。该算法避免了个体陷入局部最优,从而提供了高效的全局优化。同时,粒子群算法通过在整个迭代中提供最佳粒子来获得最佳适应度值,从而提供较快的收敛速度。结果该算法利用了粒子群算法的全局最优性和粒子群算法的收敛速度。针对33和69总线径向输送框架的建议程序以及泰米尔纳德邦的一个实际16总线配电变电站,对多种DG类型进行了不同的案例研究,以显示所建议方法和配电系统性能的有效性。从所获得的结果来看,在系统的所有母线上,功率损耗大幅降低,电压水平得到改善,从而使配电系统保持在系统运行和安全约束的框架内。将等效系统与DE、PSO算法单独使用以及文献中已有的其他算法进行比较,表明所提方法在收敛速度和目标函数值方面都有提高。最后,如果在考虑的测试系统中分配基于光伏的DG单元,则进行经济效益分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal location and sizing of various DG units in real distribution substation using heuristic approach
Purpose The purpose of the study is distributed generation planning in a radial delivery framework to identify an appropriate location with a suitable rating of DG units energized by renewable energy resources to scale back the power loss and to recover the voltage levels. Though several algorithms have already been proposed through the target of power loss reduction and voltage stability enhancement, further optimization of the objectives is improved by using a combination of heuristic algorithms like DE and particle swarm optimization (PSO). Design/methodology/approach The identification of the candidate buses for the location of DG units and optimal rating of DG units is found by a combined differential evolution (DE) and PSO algorithm. In the combined strategy of DE and PSO, the key merits of both algorithms are combined. The DE algorithm prevents the individuals from getting trapped into the local optimum, thereby providing efficient global optimization. At the same time, PSO provides a fast convergence rate by providing the best particle among the entire iteration to obtain the best fitness value. Findings The proposed DE-PSO takes advantage of the global optimization of DE and the convergence rate of PSO. The different case studies of multiple DG types are carried out for the suggested procedure for the 33- and 69-bus radial delivery frameworks and a real 16-bus distribution substation in Tamil Nadu to show the effectiveness of the proposed methodology and distribution system performance. From the obtained results, there is a substantial decrease in the power loss and an improvement of voltage levels across all the buses of the system, thereby maintaining the distribution system within the framework of system operation and safety constraints. Originality/value A comparison of an equivalent system with the DE, PSO algorithm when used separately and other algorithms available in literature shows that the proposed method results in an improved performance in terms of the convergence rate and objective function values. Finally, an economic benefit analysis is performed if a photo-voltaic based DG unit is allocated in the considered test systems.
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来源期刊
Circuit World
Circuit World 工程技术-材料科学:综合
CiteScore
2.60
自引率
0.00%
发文量
33
审稿时长
>12 weeks
期刊介绍: Circuit World is a platform for state of the art, technical papers and editorials in the areas of electronics circuit, component, assembly, and product design, manufacture, test, and use, including quality, reliability and safety. The journal comprises the multidisciplinary study of the various theories, methodologies, technologies, processes and applications relating to todays and future electronics. Circuit World provides a comprehensive and authoritative information source for research, application and current awareness purposes. Circuit World covers a broad range of topics, including: • Circuit theory, design methodology, analysis and simulation • Digital, analog, microwave and optoelectronic integrated circuits • Semiconductors, passives, connectors and sensors • Electronic packaging of components, assemblies and products • PCB design technologies and processes (controlled impedance, high-speed PCBs, laminates and lamination, laser processes and drilling, moulded interconnect devices, multilayer boards, optical PCBs, single- and double-sided boards, soldering and solderable finishes) • Design for X (including manufacturability, quality, reliability, maintainability, sustainment, safety, reuse, disposal) • Internet of Things (IoT).
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