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DECENTRALIZED VOLTAGE CONTROL TO MINIMIZE DISTRIBUTION LOSSES IN AN ISLANDED MICROGRID

机译:分散电压控制,以最大限度地减少岛状微电网中的分布损失

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Microgrids can bring electricity power to rural communities or isolated military forward operation bases. For many rural areas, renewable powers could be the cheapest power sources available. Utilizing renewable power sources and energy storage systems such as batteries requires new power and voltage control strategies. In addition, these microgrids may be reconfigured frequently. Therefore, the control strategies must be implemented in a plug-and-play fashion at individual nodes, and ideally they should not require much communication with neighboring nodes. Another issue of microgrids is the resistance loss in distribution lines due to the lower operating voltage. To reduce power losses, voltage control is required which again must work in a plug-and-play fashion. In this paper, we propose a decentralized real-time voltage control algorithm that minimizes power losses for a microgrid supported by inverter based distributed power sources. Its optimality and plug-and-play nature are demonstrated through simulations.
机译:微电网可以为农村社区或孤立的军事前进行动基地带来电力。对于许多农村地区,可再生能力可能是最便宜的电源。利用可再生电源和诸如电池的能量存储系统需要新的电源和电压控制策略。另外,这些微电网可以经常重新配置。因此,必须在各个节点的即插即用时尚中实现控制策略,理想情况下,它们不应需要与相邻节点进行太多通信。另一个Microgrids的问题是由于较低的工作电压导致的分配线路的电阻损耗。为了降低功率损耗,需要电压控制,再次必须以即插即用方式工作。在本文中,我们提出了一种分散的实时电压控制算法,最小化了基于逆变器的分布式电源支持的微电网的功率损耗。通过模拟证明了其最优性和即插即用性质。

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