基于多智能体系统的低压配电网电压调节

Stefan Lang, Niannian Cai, J. Mitra
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引用次数: 4

摘要

在许多低压配电网中,由于蓄热电源的高馈电,在某些节点上可能出现不允许电压。本文提出了一种符合规定电压带的方法。它是由一个多智能体系统来实现的,该系统执行一个三阶段算法来调整电网节点的电压。提出了一种可能的配置,即稳压配电变压器。它分几个步骤调节二次电压。多智能体系统测量网络中不同点的电压。三步算法控制电压、无功和实际功率,使其符合规定的电压带。本文给出了一种灵活的通信结构,用于agent之间的数据交换。给出了一个网络实例。这显示了通信周期的有效性。此外,在测试系统中验证了三步算法的影响。
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Multi-agent system based voltage regulation in a low-voltage distribution network
Due to the high feed of regenerative power in many low-voltage distribution networks, it is possible that in some nodes inadmissible voltages appear. This paper presents a way to comply with the prescribed voltage band. It is realized by a multiagent system, which executes a three-stage algorithm to adjust the voltage at the nodes of the grid. A possible configuration is presented with a voltage regulated distribution transformer. It regulates the secondary voltage in several steps. The multi-agent system measures the voltages in different points in a network. The three-step algorithm controls the voltage, reactive and real power to comply with the prescribed voltage band. The paper shows a flexible communication structure, which is used by the agents to exchange data. An example network is presented. This displays the effectiveness of the communication cycle. Furthermore, the influence of the three-step algorithm is shown in a test system.
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