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首页> 外文期刊>Applied Energy >Unmasking the causal relationships latent in the interplay between occupant's actions and indoor ambience: A building energy management outlook
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Unmasking the causal relationships latent in the interplay between occupant's actions and indoor ambience: A building energy management outlook

机译:揭示乘员的行为与室内氛围之间相互作用的潜在因果关系:建筑能源管理的前景

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摘要

Assiduous attention to building energy management is essential as the building sector contributes hugely to global energy consumption. Zero cost human-based energy retrofit planning is a promising solution as it can be applied to the existing buildings. Aside from a few works on obtaining optimal retrofits, studies on the impact of occupants' actions are scarce. The primary objective of this work is to demonstrate how the changes in occupants' actions, towards Pareto-optimality, can be beneficial for a better indoor ambience and thereby, associating the users with the energy systems. The proposed approach considers the context, documented by sensors, of an office at Grenoble Institute of Technology, France. Utilizing this data, approximation-guided evolutionary multi objective optimization algorithm (AGE-II) generates actions by minimizing thermal dissatisfaction, air quality dissatisfaction, heater energy consumption and interference with the daily routine. The optimal and historical plans are compared to reveal the causality of the energy systems that are influenced by occupant's actions. These explanations develop awareness of the effect of changing occupants' actions to an optimal plan by presenting to the occupants the reasons for such changes. Hence, the proposed work helps the occupants to perceive the impact of actions which allow them to adapt their habits to a more energy-efficient routine.
机译:由于建筑行业对全球能源消耗做出了巨大贡献,因此对建筑能源管理的高度重视至关重要。零成本的基于人的能源改造计划是一个有前途的解决方案,因为它可以应用于现有建筑物。除了为获得最佳改装而进行的一些工作外,关于乘员行为影响的研究很少。这项工作的主要目的是证明乘员的行为朝着帕累托最优的变化如何有益于更好的室内氛围,从而使用户与能源系统联系起来。提议的方法考虑了法国格勒诺布尔技术学院办公室的传感器记录的环境。利用这些数据,近似指导的进化多目标优化算法(AGE-II)通过将热不满,空气质量不满,加热器能耗以及对日常工作的干扰降到最低来生成动作。比较最佳计划和历史计划,以揭示受乘员行动影响的能源系统的因果关系。这些解释通过向乘员呈现这种改变的原因,从而使他们意识到了将乘员的行为改变为最佳计划的影响。因此,拟议的工作将帮助居住者感知行动的影响,使他们适应习惯以提高能源效率。

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