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Models of domestic occupancy, activities and energy use based on time-use data: deterministic and stochastic approaches with application to various building-related simulations

机译:基于时间使用数据的家庭入住,活动和能源使用的模型:确定性和随机方法,应用于各种与建筑物相关的模拟

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摘要

Time-use data (TUD) have a large potential for improving occupancy and load modelling and for introducing realistic behavioural patterns into various simulations. In this article, previously developed models of occupancy, activities and energy use based on TUD are extended and described in a general framework. Two extensions are studied: deterministic conversion of empirical TUD is extended into a complete thermal load model encompassing both occupancy and various end-uses and a Markov-chain approach for generating synthetic TUD sequences is extended to include a model for load management. Three examples of building-related applications are presented: simulation of indoor climate in a low-energy building, household electricity load management in response to time-differentiated electricity tariffs and simulations of load matching in a net zero energy building. The main conclusion is that the extended model framework can generate detailed and realistic behavioural patterns that allow diversity and correlations between end-uses to be taken into account.
机译:时间使用数据(TUD)具有很大的潜力,可以改善占用率和负载建模,并将现实的行为模式引入各种模拟中。在本文中,先前开发的基于TUD的占用,活动和能源使用的模型得到了扩展,并在通用框架中进行了描述。研究了两个扩展:将经验性TUD的确定性转换扩展为包含占用率和各种最终用途的完整热负荷模型,并扩展了用于生成合成TUD序列的马尔可夫链方法,以包括用于负荷管理的模型。给出了三个与建筑物相关的应用示例:低能耗建筑物中的室内气候模拟,响应时差电价的家庭电力负荷管理以及净零能耗建筑物中的负荷匹配模拟。主要结论是,扩展的模型框架可以生成详细而现实的行为模式,从而可以考虑最终用途之间的多样性和相关性。

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