Smart monitoring for sustainable and energy-efficient buildings: A case study

D. Brunelli, I. Minakov, R. Passerone, M. Rossi
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引用次数: 26

Abstract

Steadily raising standards for indoor environmental quality in living and office spaces lead to an extensive utilization of high performance and power-demanding climate control systems. An increasing utility and energy cost for buildings operation, in turn, pushes researchers and manufactures to explore new strategies to reduce energy waste and minimize ecological impact. The key enabler for an efficient energy management is accurate measurement and assessment of buildings operation that contribute to the total load. In this paper we present an ad-hoc Wireless Sensor Network deployment that performs monitoring of electricity load and occupants comfort level in a university building where more than a hundred students and employees are present every day. The system consists of 27 sensor devices continuously measuring vibration, temperature, humidity, light and the air conditioning system electrical load. An accurate analysis of indoor conditions, recognition of inhabitant comfort level, automatic forecasting and recommendations on optimal balance between environmental quality and power demands is the main objective of the presented system. Preliminary laboratory experiments and following 15 months of continuous real-world operation demonstrate that the presented system provides accurate monitoring delivering a valuable insight into the building operation.
可持续和节能建筑的智能监控:案例研究
生活和办公空间的室内环境质量标准不断提高,导致高性能和高功耗的气候控制系统的广泛使用。建筑运行的公用事业和能源成本不断增加,反过来又推动研究人员和制造商探索新的战略,以减少能源浪费和最大限度地减少生态影响。高效能源管理的关键是准确测量和评估对总负荷有贡献的建筑物运行。在本文中,我们提出了一种自组织无线传感器网络部署,用于监测每天有100多名学生和员工在场的大学大楼的电力负荷和居住者舒适度。该系统由27个传感器组成,连续测量振动、温度、湿度、光线和空调系统的电气负荷。该系统的主要目标是准确分析室内条件,识别居民舒适度,自动预测并建议环境质量和电力需求之间的最佳平衡。初步的实验室实验和连续15个月的实际运行表明,该系统提供了准确的监控,为建筑物的运行提供了宝贵的见解。
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