A hybrid optimization for distributed generation and D-STATCOM placement in radial distribution network: a multi-faceted evaluation

IF 1.5 Q2 ENGINEERING, MULTIDISCIPLINARY
Anbuchandran S, Arumuga Babu M, Silas Stephen D, Thinakaran M
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Abstract

The deregulation of the power system, upward growth in electrical energy demand and network expansion have resulted in an increasing integration of distributed generation (DG) and distribution static synchronous compensator (D-STATCOM) into radial distribution systems (RDS). Nonetheless, the optimal allocation of these devices is highly important to derive immense benefits. This investigation narrows down on optimizing DG and D-STATCOM placement in IEEE 33-bus RDS with a view to increase bus voltages, decrease power losses as well as maximize economic gains. The study undertakes a comprehensive analysis comparing the technical, economic and environmental performance of DG and D-STATCOM; thereby enabling power engineers to make informed choices concerning which device will be most advantageous when it comes to delivering power in RDS. A fuzzy enhanced firefly optimization (FEFO) approach is proposed for the optimization and a multifaceted evaluation in terms of technical, financial and environmental is presented for effective decision-making on distributed energy resource deployment. D-STATCOM and wind DG integrations led to notable reductions in power loss and pollutant emissions, highlighting their effectiveness in improving power quality and reducing reliance on fossil fuels. While wind DG incurred a higher installation cost ($3,100,749.2) compared to D-STATCOM ($90,566.6), it achieved greater yearly power loss cost savings ($69,198 versus $47,619). FEFO’s efficiency in optimization stands out, aiding engineers in making informed decisions for optimizing D-STATCOM and wind-DG integration in the IEEE-33 RDS, ultimately enhancing system performance and cost-effectiveness through proactive planning. The integration of D-STATCOM and wind DG led to a significant improvement in distribution system efficiency, with D-STATCOM reducing real power loss by 28.7% and reactive power loss by 27.8%, while wind DG achieved greater reductions of 41.8% in real power loss and 37.5% in reactive power loss, alongside reductions in pollutant emissions of 1.5% and 2.2%, respectively.
径向配电网中分布式发电和 D-STATCOM 布置的混合优化:多方面评估
电力系统管制的放松、电能需求的增长和电网的扩张,导致越来越多的分布式发电(DG)和配电静止同步补偿器(D-STATCOM)集成到径向配电系统(RDS)中。然而,这些设备的优化配置对于获得巨大效益非常重要。本研究旨在优化 IEEE 33 总线 RDS 中的 DG 和 D-STATCOM 布置,以提高母线电压、减少功率损耗并最大限度地提高经济效益。该研究对 DG 和 D-STATCOM 的技术、经济和环境性能进行了全面分析比较,从而使电力工程师能够在 RDS 中就哪种设备最有利于电力输送做出明智的选择。本文提出了一种模糊增强萤火虫优化(FEFO)方法来进行优化,并从技术、财务和环境方面进行了多方面的评估,从而为分布式能源资源的部署提供了有效的决策依据。D-STATCOM 和风力 DG 的集成显著减少了电力损耗和污染物排放,突出了它们在改善电能质量和减少对化石燃料依赖方面的有效性。虽然风力 DG 的安装成本(3,100,749.2 美元)高于 D-STATCOM 的安装成本(90,566.6 美元),但其每年节省的电能损耗成本更高(69,198 美元对 47,619 美元)。FEFO 的优化效率非常突出,可帮助工程师做出明智的决策,优化 IEEE-33 RDS 中的 D-STATCOM 和风 DG 集成,最终通过前瞻性规划提高系统性能和成本效益。D-STATCOM 和风力 DG 的集成显著提高了配电系统的效率,其中 D-STATCOM 将实际功率损耗降低了 28.7%,将无功功率损耗降低了 27.8%,而风力 DG 则将实际功率损耗降低了 41.8%,将无功功率损耗降低了 37.5%,同时还将污染物排放量分别降低了 1.5% 和 2.2%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Engineering Research Express
Engineering Research Express Engineering-Engineering (all)
CiteScore
2.20
自引率
5.90%
发文量
192
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