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A Potential Field Load Scheduling Approach for Self-Sustainable Electrical Microgrids

机译:一种自持式微电网的潜在场负荷调度方法

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The electrical microgrids concept emerged from the proliferation of renewable energy systems and their spreading across the distribution system, alongside with electrical vehicles and storage systems. This change in the electrical energy paradigm implies a change in the way these systems are modeled and controlled due to their ability to operate as autonomous entities, decoupled from the main grid. This separation implies that the microgrid operates under tighter control in order to remain independent and self-sustainable, where prioritization, scheduling and shedding assume crucial roles. This paper introduces an innovative way to optimize the resource allocation of controllable loads in an electrical microgrid operating in island mode by using the potential fields concept. For this purpose, individual nodes representing producers and consumers are enriched with potential fields, being able to optimize their schedule and behavior, and consequently increase the microgrid's self-sustainability.
机译:微电网的概念源于可再生能源系统的扩散及其在配电系统,电动车辆和存储系统中的传播。电能范式的这种变化意味着这些系统的建模和控制方式也将发生变化,这是因为它们具有作为独立于主电网的独立实体运行的能力。这种分离意味着微电网在更严格的控制下运行,以保持独立性和自我可持续性,在此过程中,优先级,调度和撤消起着至关重要的作用。本文介绍了一种创新的方法,该方法通过使用势场概念来优化在孤岛模式下运行的微电网中可控负载的资源分配。为此,代表生产者和消费者的各个节点都充满了潜在的领域,能够优化其进度和行为,从而提高了微电网的自我可持续性。

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