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Optimal capacitor placement in a smart grid using demand side management as a resource

机译:使用需求侧管理作为资源的智能网格中的最佳电容器放置

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Capacitors have been installed in distribution systems for improving power factor, improving the voltage profile, increasing the power flow through the transformers and cables and reduction of power losses. A lot of research has been done in this regard. In this work, we propose to install capacitors in a future smart grid where Demand Side Management (DSM) can be utilized as a resource in system planning. With DSM in action, system planners need not take into account the peak load, but a lesser fraction of the same, reducing the costs involved. In this way, we can defer the investments for later. There will be reduced power losses and a better voltage profile in a DSM enabled smart grid and placing capacitors in such a grid will reduce the costs incurred. Reliability evaluation considering reactive power source failures is also performed in the normal system and the one where DSM is in operation. We take a 10 bus radial distribution system and see that DSM reduces the capacitor placement cost and also improves system reliability.
机译:电容器已安装在用于提高功率因数的分配系统中,提高电压曲线,增加通过变压器和电缆的功率流动以及减少功率损耗。在这方面已经完成了许多研究。在这项工作中,我们建议在未来的智能电网中安装电容器,其中需求侧管理(DSM)可以用作系统规划中的资源。随着DSM的行动,系统规划人员不需要考虑到峰值负荷,但相同的一小部分,降低所涉及的成本。通过这种方式,我们可以推迟稍后的投资。将降低功率损耗,并且在DSM启用的智能电网中更好的电压配置,并在这种网格中放置电容将降低所产生的成本。考虑无功电源故障的可靠性评估也在正常系统中执行,以及DSM在运行中的一个。我们采取了一个10母线径向分配系统,并参见DSM降低了电容器放置成本并提高了系统可靠性。

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