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Quantifying maximum controllable energy demand in ensembles of air conditioning loads

机译:量化整体空调负载中的最大可控能量需求

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Flexible loads such as residential air-conditioners (ACs) can be directly controlled to provide demand-side regulation and balancing services to the grid. In aggregation, an ensemble of ACs may be seen as a distributed energy storage resource with a capacity modulated by ambient temperature and the AC temperature set-points. Existing research has predominantly focused on modelling and controlling the aggregate demand response of such ensembles, but relatively little work has been devoted to quantifying controllable energy resource as a function of ensemble diversity. This paper investigates analytic bounds on the aggregate energy demand transients induced by step changes in temperature set-points for ensembles of ACs. An analytic characterisation of the transient demand response of homogeneous ensembles is used to bound the controllable energy demand of heterogeneous ensembles constructed by aggregation of clusters of identical loads. The analysis shows that the transient energy demand of a heterogeneous ensemble can be bounded by that of an associated mean homogeneous ensemble as a function of the set-point step size relative to the ACs hysteresis regulation band width. The proposed analytic bounds are numerically evaluated for the simulated demand responses of AC ensembles with various degrees of heterogeneity.
机译:可以直接控制诸如家用空调(AC)之类的柔性负载,以为电网提供需求侧调节和平衡服务。总体而言,AC的集合可以看作是一种分布式能量存储资源,其容量由环境温度和AC温度设定点调制。现有研究主要集中在建模和控制此类集合体的总需求响应上,但是相对较少的工作致力于量化可控制的能源作为集合体多样性的函数。本文研究了由AC集合体的温度设定点的阶跃变化引起的总能量需求瞬态的解析边界。均质集成体的瞬态需求响应的解析特征用于限制通过聚集相同负载的群集而构建的异质集成体的可控能量需求。分析表明,相对于AC滞后调节带宽,异质集合的瞬态能量需求可以由相关的均质集合的瞬态能量需求来确定,该函数是设定步长的函数。针对具有不同异构度的AC集成的模拟需求响应,对提出的解析边界进行了数值评估。

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