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Protection coordination in power system with distributed generations.

机译:分布式发电系统中的保护协调。

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摘要

Protective equipment is one of the most important secondary devices and has great effect on the operation of power system. Relay coordination is therefore an absolutely necessary work in the process of designing and operating power system. The objective of this thesis is to analyze the changes in power system protection after the distributed generations (DG) are connected to the power system and then search for a new protection coordination scheme and the necessary options for the power systems.; A multi-agent approach to pair-to-pair relay coordination has been proposed in this thesis. The proposed multi-agent system consists of a number of relay agents, DG agents and equipment agents. Coordination strategy is embedded in every relay agent to facilitate the relay agents to be coordinated under different system situations. In the coordination strategy, relay settings and time will not be the only parameters that will decide the relay coordination. Relay agents communicate themselves in the relay society and also with DG agents and equipment agents in order to obtain a successful coordination. The validity and effectiveness of the proposed multi-agent system have been demonstrated by applying it to an agent-based platform-"JADE". The communication simulation shows that the successful information communication between agents has been achieved indicating that the proposed multi-agent system is a feasible approach in protection coordination.; Further works are carried out by proposing the multi-agent approach to substation protection coordination. The proposed multi-agent system takes the substation as one JADE Agent Container which consists of a substation management agent and a number of relay agents, DG agents and equipment agents. Intertripping and power flow control are the options that can be applied as the coordination strategy. Pre-fault constraints, fault constraints and post-fault constraints have been taken into the consideration in coordination strategy. Relay agents communicate themselves in the relay society and also with substation management agent, DG agents and equipment agents in order to obtain a successful coordination.; Based on the substation coordination system, a multi-agent approach to power system protection coordination has been extended. Coordination strategy is embedded both in substation management agent and relay agents. Both intertripping and power flow control are applied as coordination strategy. The substation management agent communicates not only with the agents within one substation, but also with other substation management agents. The coordination between different substations is achieved by the substation management agent. This communication simulation is obtained by the agent communication between different JADE containers. The communication simulation shows that the successful information communication has been achieved not only between agents within one JADE container but also between different JADE containers. (Abstract shortened by UMI.)
机译:防护设备是最重要的二次设备之一,对电力系统的运行影响很大。因此,继电器协调是电力系统设计和运行过程中绝对必要的工作。本文的目的是分析分布式发电(DG)连接到电力系统后电力系统保护的变化,然后寻找新的保护协调方案以及电力系统的必要选择。本文提出了一种多智能体对对中继中继的方法。拟议的多代理系统由许多中继代理,DG代理和设备代理组成。协调策略嵌入在每个中继代理中,以方便中继代理在不同的系统情况下进行协调。在协调策略中,中继设置和时间将不是决定中继协调的唯一参数。中继代理在中继协会中以及与DG代理和设备代理进行通信,以获得成功的协调。通过将其应用于基于代理的平台“ JADE”,已证明了所提出的多代理系统的有效性和有效性。通信仿真表明,智能体之间已经实现了成功的信息通信,表明所提出的多智能体系统是保护协调的一种可行方法。通过提出变电站保护协调的多主体方法来进行进一步的工作。拟议的多代理系统将变电站作为一个JADE代理容器,该容器由变电站管理代理和许多中继代理,DG代理和设备代理组成。脱扣和潮流控制是可以用作协调策略的选项。在协调策略中已考虑了故障前约束,故障约束和故障后约束。中继代理在中继社会中与自己通信,还与变电站管理代理,DG代理和设备代理进行通信,以便获得成功的协调。在变电站协调系统的基础上,扩展了一种多智能体的电力系统保护协调方法。变电站管理代理和中继代理中都嵌入了协调策略。脱扣和潮流控制均被用作协调策略。变电站管理代理不仅与一个变电站内的代理进行通信,而且还与其他变电站管理代理进行通信。变电站管理代理可以实现不同变电站之间的协调。该通信仿真是通过不同JADE容器之间的代理通信获得的。通信仿真表明,成功的信息通信不仅在一个JADE容器内的代理之间,而且在不同的JADE容器之间也已实现。 (摘要由UMI缩短。)

著录项

  • 作者

    Wan, Hui.;

  • 作者单位

    Hong Kong Polytechnic University (People's Republic of China).;

  • 授予单位 Hong Kong Polytechnic University (People's Republic of China).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 181 p.
  • 总页数 181
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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