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Demand-supply balancing using multi-agent system for bus-oriented microgrids

机译:使用多智能体系统的面向总线的微电网供需平衡

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To balance demand and supply in a microgrid can be considered as a demand-supply balancing problem, and it can be solved in either a static way or a dynamic way. In static algorithms knowledge about the system is known ahead of time. The connection of load and generator is made at the designing phase. A demand-supply balancing algorithm using the knowledge of system state at runtime has potentials of performing better than static algorithms. Demand-supply balancing problem is a large optimization problem with many variables for consumption or generation power flow at connected buses. We developed a market-based multi-agent system solving the problem in a decentralized way. Our approach is iterative with a fixed number of inter-agent communication steps. Consumer agents exchange simple messages with producers in the power network and then solve their own optimization problem by maximizing their own benefits. It has been shown that this approach converges to a solution when the agents??? objectives are achieved without a global coordinator. We have simulated different scaled bus-oriented microgrids and the simulation results show that the performance of the approach is promising.
机译:在微电网中平衡需求和供应可以被认为是供需平衡问题,可以通过静态或动态方式解决。在静态算法中,有关系统的知识是提前知道的。负载与发电机的连接是在设计阶段完成的。使用运行时系统状态知识的需求-供应平衡算法具有比静态算法更好的执行潜力。供需平衡问题是一个很大的优化问题,它具有许多变量,用于连接的总线上的功耗或发电潮流。我们开发了基于市场的多代理系统,以分散的方式解决了该问题。我们的方法是使用固定数量的代理间通信步骤进行迭代的。消费者代理与电网中的生产者交换简单的消息,然后通过最大化自己的利益来解决自己的优化问题。已经表明,当代理人将这种方法收敛到一个解决方案时,这种方法可以解决。没有全球协调员就可以实现目标。我们已经模拟了不同比例的面向总线的微电网,并且仿真结果表明该方法的性能是有希望的。

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