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Development of voltage control system for multi-terminal low-voltage DC distribution system

机译:多端子低压直流配电系统电压控制系统的开发

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LVDC (Low Voltage Direct Current) distribution systems have advantages over conventional AC distribution systems in terms of power quality, power-conversion-loss reduction, renewable energy integration, and so on. There were pioneering researches into development of LVDC distribution systems but most of them considered radial distribution systems with one grid-connection converter. In this paper, we propose multi-terminal LVDC distribution system that has multiple grid-connection points and integration of distributed energy resources (DERs). The multi-terminal LVDC system can have more reliability and flexibility in electric power provision because it has multiple grid-interfacing AC/DC converters. However, multiple paths for power flows can increase the complexity in system operation and control. This paper proposes a new voltage control method for multi-terminal LVDC distribution systems using multi-agent system (MAS). This paper presents the hierarchical control algorithms to coordinate multiple AC/DC converters and DERs. Simulation studies demonstrates the performance of the proposed method.
机译:LVDC(低压直流电)配电系统在电能质量,降低功率转换损耗,可再生能源整合等方面均优于传统的AC配电系统。在LVDC配电系统的开发方面进行了开创性研究,但大多数都将其视为带有一个并网转换器的径向配电系统。在本文中,我们提出了具有多个并网点和分布式能源(DER)集成的多终端LVDC配电系统。多端子LVDC系统在电源供应方面可以具有更高的可靠性和灵活性,因为它具有多个与电网相连的AC / DC转换器。但是,用于功率流的多条路径会增加系统操作和控制的复杂性。本文提出了一种采用多智能体系统(MAS)的多端LVDC配电系统电压控制的新方法。本文提出了用于协调多个AC / DC转换器和DER的分层控制算法。仿真研究证明了该方法的性能。

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