从结构到室内环境的智能楼宇监控

J. Včelák, A. Vodička, M. Maska, J. Mrňa
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引用次数: 21

摘要

建筑变成了复杂的系统,各种技术集成在一起,因此应该作为一个单一的系统工作。现代建筑需要多个监控系统协同工作,在保持室内舒适和健康环境的同时实现节能。整体建筑管理系统(BMS)提供了一种从建筑物收集数据并向安装的技术发出控制命令的集成方式。在现代建筑中监测的参数不仅是温度和湿度,而且今天的建筑物还监测二氧化碳或挥发性有机化合物(VOC)的浓度值。过去几十年的经验表明,有必要对建筑物的结构进行监测。可再生材料(木材)现在经常用于建筑施工。这种材料对湿度等环境因素非常敏感,为了避免将来出现结构健康问题,必须对环境进行监测。特别是木材,当暴露在湿度或湿气可以降解相当快,可以失去负载能力。现代通信技术允许将许多传感器直接安装到结构中,从而可以连续监测建筑结构以及建筑中的室内气候。物联网(IoT)允许新的通信技术在智能城市领域提供低成本,低功耗的传感器应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Smart building monitoring from structure to indoor environment
Buildings became complex systems where there are various technologies integrated together and thus should work as a single system. Modern building has several monitoring and control systems which should cooperate together to achieve energy saving while keeping indoor comfort and healthy environment. The overall building management systems (BMS) provides an integrated way to gather data from the building and issue control commands to the installed technology. The parameters that are monitored in modern buildings are not only temperature and humidity but todays buildings monitor also concentration values of CO2 or volatile organic compounds (VOC). The experience from last decades shows necessity to monitor also the structure of the building. Renewable materials (wood) are today often used for building construction. This material is quite sensitive to environmental factors like humidity and the environment has to be monitored in order to avoid structural health problems in future. Specially timber when exposed to humidity or moisture can degrade quite quickly and can lose load capacity. Modern communication technologies allows installation of many sensors directly into the structure which allows continuous monitoring of the building construction as well as the indoor climate in the building. Internet of Things (IoT) allows new communication technologies providing low cost, low power sensor application within smartcity sector.
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