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首页> 外文期刊>Applied Energy >Energy efficient climate control in office buildings without giving up implementability
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Energy efficient climate control in office buildings without giving up implementability

机译:办公大楼中的节能气候控制而又不放弃可实施性

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摘要

The adaptation between a building and its automation system can potentially be increased by model-based controllers with an integrated control model and information about indoor climate disturbances. The associated energy savings potential is large but a widespread utilization is typically prevented by high complexities. From that point of view, a trade-off technology that combines implementability with an overall higher performance than the system of current practice would be a better option at most sites. This work presents an experimental evaluation of an alternative controller that follows the same principle as model-based, but has gone through a large number of simplification measures for a reduced overall complexity and a limited function. The controller was evaluated for indoor climate control by automating the ventilation flow rate during a typical office working day that was re-created in a laboratory environment. Experiments were conducted in two different office sites, as well as during two weather seasons of Swedish summer and winter. From the investigation, it was concluded that despite of the reduced complexity, the investigated controller could save between 12% and 19% of indicated energy compared to a system of common practice at the same time as the quality of indoor climate was maintained. (C) 2015 Elsevier Ltd. All rights reserved.
机译:带有集成控制模型和有关室内气候干扰信息的基于模型的控制器可以潜在地提高建筑物及其自动化系统之间的适应性。相关的节能潜力很大,但是高复杂性通常会阻止广泛的利用。从该角度来看,在大多数站点上,将可实现性与总体性能相结合的折衷技术比当前实践系统更好。这项工作提出了一种替代控制器的实验评估,该控制器遵循与基于模型的原理相同的原理,但经过大量简化措施以降低总体复杂度并限制功能。通过在实验室环境中重新创建的典型办公室工作日内自动化通风流量来评估控制器的室内气候控制。在两个不同的办公地点以及瑞典夏季和冬季的两个天气季节进行了实验。从调查中得出的结论是,尽管降低了复杂性,但在保持室内气候质量的同时,与通常的系统相比,所研究的控制器可以节省12%至19%的指示能量。 (C)2015 Elsevier Ltd.保留所有权利。

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