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Implementation and assessment of physically based electrical load models: application to direct load control residential programmes

机译:基于物理的电力负荷模型的实现和评估:直接应用于住宅负荷控制程序

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The purpose of the paper is to describe physically based electrical models of heating, ventillation and air conditioning residential loads. These models are based on energy balances between the internal air, the dwelling constructive elements, the conditioner appliances and the external environment through a discrete state-space equation system. The main objective of these dynamic models is to evaluate load management programmes, above all direct load control actions. The models have been implemented and tested to assess their accuracy and suitability in this specific kind of applications. In this way, simulated results have been compared with data collected over a period of one year in different cities and for different load performances steady state as well as response to remote control actions. The advantages of the models proposed here are also compared with models previously developed and described in the literature.
机译:本文的目的是描述供暖,通风和空调住宅负荷的基于物理的电气模型。这些模型基于内部空气,住宅建筑元素,空调设备和外部环境之间的能量平衡(通过离散的状态空间方程组)。这些动态模型的主要目标是评估负载管理程序,首先是直接负载控制操作。这些模型已经过实施和测试,以评估其在这种特定类型应用中的准确性和适用性。通过这种方式,将模拟结果与一年中在不同城市收集的数据进行了比较,并针对不同的负载性能达到了稳态以及对远程控制动作的响应。这里提出的模型的优点也与以前开发和描述的模型进行了比较。

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