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首页> 外文期刊>Journal of Energy Storage >Optimal Placement and Sizing of Wind Turbine Generators and Superconducting Magnetic Energy Storages in a Distribution System
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Optimal Placement and Sizing of Wind Turbine Generators and Superconducting Magnetic Energy Storages in a Distribution System

机译:风力涡轮发电机的最佳放置和尺寸分配系统中的超导磁能存储

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High penetration of intermittent wind-turbine generation (WTG) into electric distribution system along with large variations of load demand introduce many problems to the system such as high power losses, voltage sag, and low voltage stability. To mitigate such problems, the distribution system is supported by superconducting magnetic energy storages (SMESs). This paper is aimed at determining the optimal placement and sizing of WTGs and SMESs in a distribution system using a proposed multi-objective-function based optimization method. The method is a hybrid one being based on an efficient algorithm called Equilibrium Optimizer (EO) along with loss sensitivity factor (LSF). The weighted-sum multi-objective function (IMO) is formulated for simultaneous minimization of energy-loss and voltage-deviation as well as enhancement of voltage-stability as indices characterizing the distribution system performance. The weight factors are no longer assumed or left open to the preferences of the decision maker. They are computed while optimizing the indices of the IMO in order to determine the optimal placement and sizing of WTGs and SMESs. The proposed method for optimal placement and sizing of WTGs and SMESs is tested and validated on the standard IEEE 33-bus distribution system with time-varying voltage-dependent load models including residential, industrial, commercial, and mixed loads as well as variable wind-speed. The results obtained using EO algorithm are compared with those obtained by particle swarm optimization (PSO) and genetic algorithm (GA) to validate the effectiveness of EO. The numerical results and simulations imply that the combination of WTGs and SMESs can successfully achieve minimization of energy-loss and voltage-deviation as well as enhancement of voltage-stability, and thereby significantly improve the performance of distribution system.
机译:间歇式风力涡轮发电(WTG)进入配电系统的高渗透以及负载需求的大变化引入了许多问题,例如高功率损耗,电压凹陷和低电压稳定性。为了减轻这些问题,通过超导磁能存储(Smess)支持分配系统。本文旨在使用所提出的多目标功能基于优化方法确定在分配系统中的WTGS和Smess的最佳放置和尺寸。该方法是基于称为均衡优化器(EO)的有效算法的混合动力,以及损耗灵敏度因子(LSF)。配制加权多目标函数(IMO)以同时最小化能量损耗和电压 - 偏差,以及电压稳定性的增强作为表征分布系统性能的索引。不再承担或离开决策者的偏好。它们在优化IMO的指标时计算,以确定WTGS和SMISS的最佳放置和尺寸。在标准IEEE 33-母线分配系统上测试并验证了WTG和SMISS的最佳放置和尺寸的所提出的方法,其具有时间变化的电压依赖性负载模型,包括住宅,工业,商业和混合负载以及可变风 - 速度。将使用EO算法获得的结果与通过粒子群优化(PSO)和遗传算法(GA)获得的结果进行比较,以验证EO的有效性。数值结果和仿真意味着WTGS和Smess的组合可以成功地实现能量损耗和电压偏差的最小化以及电压稳定性的提高,从而显着提高了分配系统的性能。

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