Deferrable loads in an energy market: Coordination under congestion constraints

D. Materassi, S. Bolognani, Mardavij Roozbehani, M. Dahleh
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引用次数: 5

Abstract

We consider a scenario where price-responsive energy consumers are allowed to optimize their individual utilities via mechanisms of load-shifting in a distribution network subject to capacity constraints. The uncoordinated selfish behavior of the consumers would lead, in general, to requests that could not be served by the distribution network because of such constraints. Thus, a centralized or hierarchically coordination mechanism is required. We derive algorithms and methods to determine in real-time the largest set of consumers' decisions that are compatible with the physical constraints of the network and capable of avoiding congestion phenomena in the future. These methods are shown to be applicable to the design of coordination mechanisms with the aim of providing a large number of degrees of freedom to the users while guaranteeing the integrity of the system.
能源市场中的可延迟负荷:拥塞约束下的协调
我们考虑这样一种情景,即允许对价格敏感的能源消费者通过受容量限制的配电网络中的负荷转移机制来优化他们的个人公用事业。一般来说,消费者不协调的自私行为会导致分销网络由于这种限制而无法满足需求。因此,需要一个集中的或分层的协调机制。我们推导了算法和方法来实时确定最大的消费者决策集,这些决策集与网络的物理约束兼容,并能够避免未来的拥塞现象。这些方法适用于协调机构的设计,目的是在保证系统完整性的同时为用户提供大量的自由度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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