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Optimal placement of distributed generation with sensitivity factors considering voltage stability and losses indices

机译:考虑电压稳定性和损耗指数的灵敏度因子优化分布式发电的布置

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Loss minimization in distribution networks has considered as great significance recently since the trend to the distribution generation will require the most efficient operating scenario for economic viability variations. Furthermore, voltage instability phenomena can occur in distribution systems and caused a major blackout in the network. The decline of voltage stability level will restrict the increase of load served by distribution companies. To control distribution networks, it can be used from Distributed Generation (DG). DG is increasingly drawing great attention and development of DGs will bring new chances to traditional distribution systems. However, Installation of DG in non-optimal places can result in an increasing in system losses, voltage problems, etc. This paper presents two scenarios for distributed generation placement in a distributions system. In the first scenario only minimizing the total real power losses in the system is considered. Both the optimal size and location are obtained as outputs from the exact loss formula. The next scenario considered the voltage stability index (SI) to find optimum placement. In these scenarios Different DG placements are compared in terms of power loss, loadability and voltage stability index. To improve power transfer capacity, two line stability indices have been introduced. Distribution power flow solution algorithm is based on the equivalent current injection that uses the bus-injection to branch-current (BIBC) and branch-current to bus-voltage (BCBV) matrices. These scenarios are executed on typical 33 and 30 bus test system and yields efficiency in improvement of voltage profile and reduction of power losses; it also may permit an increase in power transfer capacity, maximum loading, and voltage stability margin.
机译:最近,分配网络中的损耗最小化已被认为具有重要意义,因为随着配电方式的发展趋势,将需要最有效的运营方案来实现经济可行性。此外,电压不稳定性现象可能发生在配电系统中,并导致网络中的严重停电。电压稳定水平的下降将限制配电公司服务的负载的增加。要控制配电网络,可以从分布式发电(DG)中使用它。 DG越来越受到人们的关注,DG的发展将为传统的配电系统带来新的机会。但是,将DG安装在非最佳位置会导致系统损耗,电压问题等增加。本文介绍了两种在配电系统中进行分布式发电的方案。在第一种情况下,仅考虑最小化系统中的总有功损耗。最佳尺寸和位置都可以从精确的损耗公式中获得,作为输出。下一种情况考虑了电压稳定性指数(SI)以找到最佳位置。在这些情况下,根据功率损耗,负载能力和电压稳定性指标比较了不同的DG布置。为了提高功率传输能力,引入了两个线路稳定性指标。配电潮流解决方案算法基于等效电流注入,该等效电流注入使用母线注入到支路电流(BIBC)和支路电流到母线电压(BCBV)矩阵。这些场景在典型的33和30总线测试系统上执行,从而在改善电压曲线和减少功率损耗方面产生了效率。它还可以增加功率传输能力,最大负载和电压稳定性裕度。

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