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Active Control of Thermostatic Loads for Economic and Technical Support to Distribution Grids

机译:积极控制恒温载荷,用于经济和技术支持分配网格

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Active control of electric water heaters (EWHs) is presented in this paper as a means of exploiting demand flexibility for supporting low-voltage (LV) distribution grids. A single-node model of an EWH is implemented in DIgSILENT PowerFactory using a thermal energy balancing equation and three decentralized control schemes are designed to ensure consumer comfort, economic benefit to the consumer, and technical support to LV grids. First, a price-based control that adaptively adjusts an allowable energy band per electricity price is implemented to ensure economic benefit. Next, an adaptive update of the energy band is done based on feeder loading to respect thermal grid constraints. Finally, a voltage-based control is implemented to provide real-time voltage support to the LV grids. Simulation results demonstrate the capability of the presented method to realize both economic and technical advantages. For the given configuration and pricing scheme, EWH owners are able to decrease their electricity cost by 29.33%, along with simultaneous assurance of consumer comfort and grid constraints.
机译:本文提出了电热水器(EWH)的主动控制作为利用用于支撑低压(LV)分布网格的需求灵活性的手段。 EWH的单节点模型在DigSilent PowerFactory中实现了使用热能平衡方程,并且设计了三种分散式控制方案,以确保消费者的舒适性,对消费者的经济效益,以及对LV网格的技术支持。首先,实施了基于价格的控制,以确保每个电价调整允许的能源带,以确保经济效益。接下来,基于馈线负载来实现能量带的自适应更新以尊重热网格约束。最后,实现了基于电压的控制以向LV网格提供实时电压支持。仿真结果证明了所提出的方法实现经济和技术优势的能力。对于给定的配置和定价方案,EWH业主能够将其电力成本降低29.33%,同时保证消费者舒适和电网约束。

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