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Voltage Regulation and Loss Minimization in Distribution Network with Renewable Generation using Smart-Inverters

机译:使用智能逆变器具有可再生生成分发网络的电压调节和损耗最小化

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Usage of renewable energy resources has always been a topic of great interest in the world of power, but high penetration of distributed generation (DG) into the distribution system may degrade the quality of the power system. The intermittent nature of distributed generation can lead to the voltage sags and swells. These negative effects can be mitigated if we can properly manage the reactive power in the system. Because of their slow response characteristics, the present reactive power compensation equipment installed in the power system cannot compensate the rapid power fluctuations of the renewable generators. Therefore, there is a requirement for the development of smart inverters to mitigate these negative effects. By absorbing or injecting the reactive power to the grid these inverters help in reducing the thermal losses and voltage violations of the system. The main goal of this paper is to show these beneficial effects on voltage and losses when the reactive power control using smart inverters is introduce to the distribution system. Numerical experiments are conducted to show the effectiveness of the smart inverters in voltage regulation and loss reduction.
机译:可再生能源的使用始终是对电力世界令人兴趣的主题,但分布式发电(DG)进入分配系统的高渗透可能会降低电力系统的质量。分布生成的间歇性质可以导致电压凹凸和膨胀。如果我们能够正确管理系统中的无功功率,可以减轻这些负面影响。由于响应特性慢,所安装在电力系统中的目前无功功率补偿设备不能补偿可再生发电机的快速电力波动。因此,有要求开发智能逆变器以减轻这些负效应。通过吸收或注入网格的无功功率,这些逆变器有助于降低系统的热损耗和电压违规。本文的主要目的是在使用智能逆变器的无功功率控制介绍到分配系统时,对电压和损耗的主要目标是对电压和损耗显示出这些有益效果。进行数值实验以显示智能逆变器在电压调节和损耗中的有效性。

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