首页> 外文会议>2011 16th Conference on Electrical Power Distribution Networks >Optimal distributed generation placement and sizing for loss and THD reduction and voltage profile improvement in distribution systems using Particle Swarm Optimization and sensitivity analysis
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Optimal distributed generation placement and sizing for loss and THD reduction and voltage profile improvement in distribution systems using Particle Swarm Optimization and sensitivity analysis

机译:使用粒子群优化和灵敏度分析的配电系统中最佳的分布式发电布置和尺寸,以降低损耗和总谐波失真并改善电压曲线

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Distributed generations (DGs) play an important role in distribution networks. Among many of their merits, loss and THD reduction and voltage profile improvement can be the salient specifications of DG. Studies show that non-optimal locations and non-optimal sizes of DG units may lead to losses increase, together with bad effect on voltage profile and harmonics. So, this paper aims at determining optimal DG allocation and sizing. To do so, the heuristic optimization technique named Particle Swarm Optimization (PSO) is used as the solving tool to minimize simultaneously the economic cost of overall system by changing sitting and varying sizes of DGs. In this optimization method, the investment cost of DGs and power losses are considered in order to being minimized. Firstly, a radial distribution power flow (PF) algorithm is executed to find the global optimal solution. Then, with respect to voltage profile, THD and loss reduction and by using the sensitivity analysis, PSO is used to calculate the objective function and to verify bus voltage limits. To include the presence of harmonics, PSO was integrated with a harmonic power flow algorithm (HPF). The proposed (PSO-HPF) based approach is tested on an IEEE 15-bus radial distribution system. Finally, the returning of investmental cost is calculated to show the economic justification of DG placement. These scenarios yields efficiency in improvement of voltage profile and reduction of THD and power losses; it also permits an increase in power transfer capacity and maximum loading.
机译:分布式世代(DG)在配电网络中扮演重要角色。在它们的许多优点中,损耗和THD的降低以及电压曲线的改善可以成为DG的主要规格。研究表明,DG设备的非最佳位置和非最佳尺寸可能会导致损耗增加,并对电压曲线和谐波产生不良影响。因此,本文旨在确定最佳DG分配和大小。为此,使用称为粒子群优化(PSO)的启发式优化技术作为求解工具,以通过更改DG的坐姿和大小来同时将整个系统的经济成本降至最低。在这种优化方法中,考虑了DG的投资成本和功率损耗,以便将其最小化。首先,执行径向分布潮流算法(PF),以找到全局最优解。然后,关于电压曲线,THD和损耗减少,并通过使用灵敏度分析,PSO用于计算目标函数并验证总线电压极限。为了包括谐波的存在,PSO与谐波潮流算法(HPF)集成在一起。该基于(PSO-HPF)的方法已在IEEE 15总线径向分配系统上进行了测试。最后,计算投资成本的回报率以显示危险品安置的经济合理性。这些方案可有效改善电压曲线,降低THD和功耗。它还允许增加功率传输能力和最大负载。

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