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Smart Building: Decision Making Architecture for Thermal Energy Management

机译:智能建筑:热能管理的决策架构

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摘要

Smart applications of the Internet of Things are improving the performance of buildings, reducing energy demand. Local and smart networks, soft computing methodologies, machine intelligence algorithms and pervasive sensors are some of the basics of energy optimization strategies developed for the benefit of environmental sustainability and user comfort. This work presents a distributed sensor-processor-communication decision-making architecture to improve the acquisition, storage and transfer of thermal energy in buildings. The developed system is implemented in a near Zero-Energy Building (nZEB) prototype equipped with a built-in thermal solar collector, where optical properties are analysed; a low enthalpy geothermal accumulation system, segmented in different temperature zones; and an envelope that includes a dynamic thermal barrier. An intelligent control of this dynamic thermal barrier is applied to reduce the thermal energy demand (heating and cooling) caused by daily and seasonal weather variations. Simulations and experimental results are presented to highlight the nZEB thermal energy reduction.
机译:物联网的智能应用正在改善建筑物的性能,减少能源需求。本地和智能网络,软计算方法,机器智能算法和普及型传感器是为环境可持续性和用户舒适性而开发的能源优化策略的一些基础。这项工作提出了一种分布式传感器-处理器-通信决策体系结构,以改善建筑物中热能的获取,存储和传递。所开发的系统在配备有内置热太阳能收集器的近零能耗建筑(nZEB)原型中实施,在其中分析了光学特性;低焓地热蓄热系统,分为不同的温度区;以及包含动态热障的信封。该动态热障的智能控制可减少日常和季节性天气变化引起的热能需求(加热和冷却)。仿真和实验结果表明了nZEB热能的降低。

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