Decentralized control for optimal voltage regulation in smart distribution grids

Leila Rashidi, J. Moshtagh, Vahid Maleki Meiabady
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引用次数: 4

Abstract

Voltage control is one of the most important issues in smart grids. Using the communication infrastructure and management that created in smart grids, end-user reactive power capable device can be coordinated for voltage support. Application and implementation of smart grids cause a fundamental change in the methods of reducing and eliminating voltage issues in distribution grids. Due to increasing role of Distributed Generations in distribution grids, by using traditional control methods, voltage issues cannot be improved desirably. In this paper a decentralized control scheme is proposed to control voltage in distribution grids. In this decentralized method, each network bus is equipped with a sensor and an oscillator to measure required parameters. It is shown that by using local coupling method, one can design the network without the need for a central controller. Genetic Algorithm is used as optimization method aimed at identifying the optimal asset of the voltage controllers. To verify the method, it is applied on the IEEE 33- bus system (unbalanced case).
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智能配电网最优电压调节的分散控制
电压控制是智能电网的重要问题之一。利用智能电网中创建的通信基础设施和管理,最终用户无功功率设备可以协调电压支持。智能电网的应用和实施使配电网降低和消除电压问题的方法发生了根本性的变化。随着分布式电源在配电网中的作用日益增强,采用传统的控制方法无法很好地改善电压问题。本文提出了一种分散控制配电网电压的方案。在这种分散的方法中,每个网络总线配备一个传感器和一个振荡器来测量所需的参数。结果表明,采用局部耦合方法可以在不需要中央控制器的情况下设计网络。采用遗传算法作为优化方法,确定电压控制器的最优资产。为了验证该方法的有效性,将其应用于IEEE 33总线系统(不平衡情况)。
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