Reduced-order modeling of aggregated thermostatic loads with demand response

Wei Zhang, Jianming Lian, Chin-Yao Chang, K. Kalsi, Yannan Sun
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引用次数: 25

Abstract

Demand Response is playing an increasingly important role in smart grid control strategies. Modeling the dynamical behavior of a large population of appliances under demand response is especially important to evaluate the effectiveness of various demand response programs. In this paper an aggregate model is proposed for a class of second-order Thermostatically Controlled Loads (TCLs). The model efficiently includes statistical information of the population, systematically deals with heterogeneity, and accounts for a second-order effect necessary to accurately capture the transient dynamics in the collective response. A good performance of the model however requires a high state dimension which dramatically complicates its formal analysis and controller design. To address this issue, a model reduction approach is developed for the proposed aggre-gate model, which can significantly reduce its complexity with small performance loss. The original and the reduced-order aggregate models are validated against simulations of thousands of detailed building models using GridLAB-D (an open-source distribution simulation software). The results indicate that the reduced-order model can accurately reproduce the steady-state and transient dynamics generated by GridLAB-D simulations with a much reduced complexity.
考虑需求响应的聚合恒温负荷的降阶建模
需求响应在智能电网控制策略中发挥着越来越重要的作用。在需求响应下对大量电器的动态行为进行建模对于评估各种需求响应方案的有效性尤为重要。本文提出了一类二阶恒温控制负荷的总体模型。该模型有效地包含了群体的统计信息,系统地处理了异质性,并考虑了准确捕捉集体响应中的瞬态动力学所必需的二阶效应。然而,良好的模型性能需要较高的状态维数,这极大地增加了模型的形式分析和控制器设计的复杂性。为了解决这一问题,本文针对所提出的聚合门模型提出了一种模型约简方法,在性能损失较小的情况下显著降低了模型的复杂度。使用GridLAB-D(一个开源的分布仿真软件)对数千个详细的建筑模型进行了仿真,验证了原始模型和降阶聚合模型。结果表明,该降阶模型能够准确再现GridLAB-D仿真生成的稳态和瞬态动力学,大大降低了模型的复杂度。
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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