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A Multiagent System for Autonomous Operation of Islanded Microgrids Based on a Power Market Environment

机译:基于电力市场环境的孤岛微电网自主运行的多智能体系统

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One of the most important requirements of microgrid operation is to maintain a constant frequency such as 50 Hz or 60 Hz, which is closely related to a power balance between supply and demand. In general, microgrids are connected to power grids and surplus/shortage power of microgrids is traded with power grids. Since islanded microgrids are isolated from any power grids, the decrease in generation or load-shedding can be used to maintain the frequency when a power imbalance between supply and demand occurs. The power imbalance restricts the electricity use of consumers in the case of supply shortage and the power supply of suppliers in the case of supply surplus. Therefore, the islanded microgrid should be operated to reduce power imbalance conditions. Meanwhile, the microgrid is a small-scale power system and the employment of skillful operators for effective operation of its components requires high costs. Therefore, automatic operation of the components is effective realistically. In addition, the components are distributed in the microgrid and their operation should consider their owners’ profits. For these reasons, a multiagent system application can be a good alternative for microgrid operation. In this paper, we present a multiagent system for autonomous operation of the islanded microgrid on a power market environment. The proposed multiagent system is designed based on a cooperative operation scheme. We show the functionality and the feasibility of the proposed multiagent system through several tests.
机译:微电网运行的最重要要求之一是保持恒定频率,例如50 Hz或60 Hz,这与供需之间的功率平衡密切相关。通常,微电网连接到电网,并且微电网的剩余/短缺电力与电网进行交易。由于孤岛微电网与任何电网都是隔离的,因此,当供需之间出现电力不平衡时,发电量或负荷减少的减少可用于维持频率。在供应短缺的情况下,电力失衡会限制消费者的用电量,在供应过多的情况下,电力供应不平衡会限制供应商的电力供应。因此,应操作孤岛微电网以减少功率不平衡状况。同时,微电网是一种小型电力系统,雇用熟练的操作员对其组件进行有效操作需要很高的成本。因此,组件的自动操作实际上是有效的。此外,组件分布在微电网中,其操作应考虑所有者的利润。由于这些原因,多代理系统应用程序可能是微电网运行的良好替代方案。在本文中,我们提出了一种多智能体系统,用于在电力市场环境中自主运行孤岛微电网。提出的多主体系统是基于协同操作方案设计的。我们通过几次测试展示了所提出的多代理系统的功能和可行性。

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