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Commercial Technologies for Advanced Light Control in Smart Building Energy Management Systems: A Comparative Study

机译:智能建筑能源管理系统中先进光控制的商业技术:对比研究

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This work investigates the economic, social, and environmental impact of adopting different smart lighting architectures for home automation in two geographical and regulatory regions: Algiers, Algeria, and Stuttgart, Germany. Lighting consumes a considerable amount of energy, and devices for smart lighting solutions are among the most purchased smart home devices. As commercialized solutions come with variant features, we empirically evaluate through this study the impact of each one of the energy-related features and provide insights on those that have higher energy saving contribution. The study started by investigating the state-of-the-art of commercialized ICT-based light control solutions, which allowed the extraction of the energy-related features. Based on the outcomes of this study, we generated simulation scenarios and selected evaluations metrics to evaluate the impact of dimming, daylight harvesting, scheduling, and motion detection. The simulation study has been conducted using EnergyPlus simulation tool, which?enables fine-grained realistic evaluation. The results show that adopting smart lighting technologies have a payback period of few years and that the use of these technologies has positive economic and societal impacts, as well as on the environment by considerably reducing gas emissions. However, this positive contribution is highly sensitive to the geographical location, energy prices, and the occupancy profile.
机译:这项工作调查了在两个地理和法规区域(阿尔及利亚阿尔及利亚和德国斯图加特)采用不同的智能照明架构进行家庭自动化的经济,社会和环境影响。照明消耗大量能量,用于智能照明解决方案的设备是购买量最大的智能家居设备之一。由于商业化解决方案具有多种功能,因此我们通过本研究以经验方式评估每种与能源相关的功能的影响,并就那些具有更高节能效果的功能提供见解。该研究始于研究基于ICT的商业化光控解决方案的最新技术,该技术可提取与能源相关的特征。基于这项研究的结果,我们生成了模拟方案并选择了评估指标来评估调光,日光采集,计划和运动检测的影响。已使用 EnergyPlus仿真工具进行了仿真研究,该工具可实现细粒度的现实评估。结果表明,采用智能照明技术的投资回收期为数年,这些技术的使用对经济和社会产生积极的影响,并通过显着减少气体排放而对环境产生积极影响。但是,这种积极贡献对地理位置,能源价格和入住率高度敏感。

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