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Enabling Online Scheduling for Multi-Microgrid Systems: An Event-Triggered Approach

机译:在线调度进行多微电网系统:事件触发的方法

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摘要

This article proposes a flexible event-triggered online scheduling (ETOS) method for residential multi-microgrid (MMG) systems integrating internal scheduling and external energy sharing levels. Our novelties lie in the flexible ETOS framework embedding customized functions and the fair energy sharing mechanism. Unlike time-triggered methods with a holistic controller and complex mechanisms, the presented ETOS framework achieves systematic management of MMG by simulating its real-life dynamics from the perspective of event-triggering. In the internal scheduling level, universal working logics are designed through active "demand response" interactions, which has high scalability and openness in function and makes event customization possible for future use. In the energy sharing level, the concept of energy level is introduced to organize a localized energy sharing, in which the sharing strategies can be decided through stimulation and transition with the advantages of fairness and low complexity. Moreover, we specify detailed function and algorithm for ETOS entities, helping to realize flexible online operation of MMG in a decentralized and natural way. Numerical simulations show that proposed ETOS is economically beneficial, computationally efficient, and is promising to facilitate the online scheduling of a practical real world MMG project.
机译:本文提出了一种灵活的事件触发的在线调度(ETOS)方法,用于集成内部调度和外部能量共享级别的居民多微电网(MMG)系统。我们的新奇是嵌入了嵌入定制功能和公平能源共享机制的灵活ETOS框架。与具有整体控制器和复杂机制的时间触发方法不同,通过从事件触发的角度模拟其现实生活动态,所呈现的ETOS框架实现了MMG的系统管理。在内部调度级别中,通过主动“需求响应”交互设计通用工作逻辑,其功能高,功能高,并使未来使用的事件定制成为可能。在能量共享水平中,引入了能量水平的概念来组织局部能源共享,其中可以通过刺激和过渡来决定共享策略,并通过公平性和低复杂性的优点来决定。此外,我们为ETOS实体指定了详细的功能和算法,有助于以分散和自然的方式实现MMG的灵活在线操作。数值模拟表明,建议的ETOS是经济上有益的,计算效率,并且很有利于促进实际现实世界MMG项目的在线调度。

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