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首页> 外文期刊>Universal Journal of Engineering Science >Multi-objective Optimization of Afghanistan Kabul City Distribution Network for Real-time Voltage Control and Power Loss Reduction
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Multi-objective Optimization of Afghanistan Kabul City Distribution Network for Real-time Voltage Control and Power Loss Reduction

机译:阿富汗喀布尔城市配电网络的多目标优化,用于实时电压控制和降低功率损耗

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Afghanistan Kabul City Distribution System (KDS) is functioning in adverse condition, and there is always programmed or un-programmed load shedding imposed by the Power Distribution Company. There are four indicators to be optimized for the sustainability of KDS, power loss reduction, stability, reliability, preservation and protection. In this paper, the optimization of power loss reduction and optimal voltage control of Kabul Distribution System (KDS) in the presence of Distributed Generation (DG) and Step-Voltage Regulator (SVR) connected to the network is proposed. In particular, Kabul city has plentiful sources of renewable energy such as Photovoltaic (PV) and wind power as a countermeasure for diminishing the losses of the system. The Multi-Objective Particle Swarm Optimization (MOPSO) based on two objective functions regarding hourly power loss reduction and voltage profile improvement of the distribution network is considered. The application of PV as DG in distribution system regarding their optimal number, size, and location justifies as loss reduction, reducing the entire grid peak demand and minimizing the congestion of the network. However, the optimized tap ratios and position of SVR are treats to enhance and stabilize the voltage prole and to control the violation of the system voltage according to load conditions. The 24 hours technical data of the practically functioning Kabul city Distribution System Junction Station II are used as a case study. Finally, the proposed algorithm has been simulated using MATLAB? software, and the results are presented.
机译:阿富汗喀布尔城市配电系统(KDS)处于不利状态,并且配电公司总是会进行编程或未编程的减载。对于KDS的可持续性,降低功率损耗,稳定性,可靠性,保存和保护,有四个指标需要优化。本文提出了在存在分布式发电(DG)和步进电压调节器(SVR)连接到网络的情况下,降低喀布尔配电系统(KDS)的功耗和优化电压控制的方法。尤其是,喀布尔市拥有丰富的可再生能源,例如光伏(PV)和风能,以此来减少系统损耗。考虑了基于两个目标函数的多目标粒子群优化(MOPSO),这两个目标函数涉及配电网的每小时功耗降低和电压分布改善。就分布式系统的最佳数量,大小和位置而言,将其作为DG在分布式系统中的应用证明降低了损耗,减少了整个电网的峰值需求并最大程度地减少了网络拥塞。但是,可以根据负载条件优化和优化SVR的抽头比率和位置,以提高和稳定电压曲线并控制违反系统电压的情况。以实际运行中的喀布尔城市配送系统交汇站II的24小时技术数据为例。最后,使用MATLAB ?软件对该算法进行了仿真,并给出了结果。

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