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Multi-Agent System Based Distributed Voltage Control in Distribution Systems

机译:配电系统中基于多代理系统的分布式电压控制

摘要

Distribution System is a standout among the most complex entities of the electric power grid. Moreover, voltage quality sustainability till customer premises, with the introduction of Distributed Generation (DG), is one of the most frenzied control areas. Previously, SCADA in cohesion with Wide Area Measurement Systems (WAMS) was a dependable control strategy, yet as the ever growing and complex distribution system is advancing towards the Smart Grids, control strategies are becoming more and more distributed in spite of the centralized one.A detailed literature review of the voltage control methods ranging from the centralized one to the fully distributed agent based control is conducted. In the light of the previous researches, a distributed voltage control based on Multi-Agent System is proposed, as the agents based control strategies, are becoming well known day by day, due to its autonomous control and decision making capacity. To make the proposed algorithm fully distributed, token transversal through the network and agents communication to remove voltage violation over least correspondence and measurements of the system, are utilized. Following instant voltage control at the load nodes, a penalty function is employed to keep the voltage value curve throughout the network as close as possible to the nominal, with minimum network losses and minimum voltage damage.The authentication of the devised control algorithm is acknowledged by utilizing a Greenfield distribution Network, which is based on the realistic loading data. Agents and the controlling logic are codded in Matlab ® programming software. A sensitivity analysis is performed based on DG penetration to have the complete overview of the proposed methodology. The principle objective of the technique is to keep the voltage value within the standard limit of ±10% of the nominal, at all load nodes while instantly utilizing voltage control entities like DGs, Static VAR Compensator (SVCs) and On-Load Tap Changer (OLTC). In addition, the optimization of network losses and voltage level close to nominal is to be accomplished by the penalty function implementation.
机译:配电系统是最复杂的电网实体之一。此外,随着分布式发电(DG)的推出,直到客户场所的电压质量可持续性也是最疯狂的控制领域之一。以前,与广域测量系统(WAMS)紧密结合的SCADA是一种可靠的控制策略,但是随着不断发展的复杂配电系统向智能电网发展,尽管采用了集中式控制系统,但控制策略却越来越分散。进行了有关电压控制方法的详细文献综述,范围从集中式控制到基于完全代理的电压控制。鉴于先前的研究,由于基于代理的控制策略由于其自主控制和决策能力而日益为人们所熟知,因此提出了一种基于多代理系统的分布式电压控制方法。为了使所提出的算法完全分布式,利用了通过网络的令牌横向交换和代理通信,以消除系统的最小对应关系和度量上的电压违规。在负载节点上进行即时电压控制之后,采用惩罚函数使整个网络的电压值曲线尽可能接近标称值,从而将网络损耗和电压损坏降至最低。利用基于实际负载数据的Greenfield分销网络。代理和控制逻辑在Matlab®编程软件中编写。基于DG渗透进行灵敏度分析,以全面了解所提出的方法。该技术的主要目标是在所有负载节点上将电压值保持在标称值的±10%的标准范围内,同时立即利用电压控制实体,例如DG,静态VAR补偿器(SVC)和有载分接开关( OLTC)。另外,网络损失和接近标称电压电平的优化将通过惩罚函数实现来实现。

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  • 作者

    Arshad Ammar;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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