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A PHYSICALLY BASED LOAD MODEL OF RESIDENTIAL ELECTRIC THERMAL STORAGE: APPLICATION TO LM PROGRAMS

机译:残余热存储的基于物理的负载模型:在LM程序中的应用

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摘要

This paper describes and assesses a physically based load model of residential Electric Thermal Storage (ETS) devices, for both static and dynamic loads. This load model is based on an energy balance between the indoor environment, the dwelling constructive parameters, the ETS device, and the internal mass through a discrete state-space equation system. Therefore, detailed information about several physical magnitudes of the whole system are given along the time: ceramic brick temperature, electrical demand, heat fluxes, and indoor temperature. The main application of this load model has been oriented towards the simulation of the ETS device performances, in order to assess load management. (LM) programs. The proposed model has been implemented and validated using data collected for the last two years in residential areas, in order to evaluate its accuracy and flexibility. Finally, a simulation case study is presented to show the possibilities of limiting and reducing the actual winter-peak by means of an LM program, proposed by the authors, that takes into account customer minimum comfort levels and the experimental data of residential load curve profiles.
机译:本文描述并评估了住宅用电存储(ETS)设备基于物理的静态和动态负载模型。该负载模型基于室内环境,住宅建筑参数,ETS设备和内部质量(通过离散状态空间方程系统)之间的能量平衡。因此,随时间给出了有关整个系统几个物理量级的详细信息:陶瓷砖温度,电需求,热通量和室内温度。为了评估负载管理,此负载模型的主要应用已针对ETS设备性能的仿真。 (LM)程序。为了评估模型的准确性和灵活性,已使用最近两年在居民区中收集的数据对模型进行了实施和验证。最后,提出了一个仿真案例研究,以显示通过作者提出的LM程序限制和减少实际冬季峰值的可能性,该程序考虑了客户的最低舒适度和住宅负荷曲线轮廓的实验数据。

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