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智能建筑舒适度与能耗的技术分析:调度、智能传感器和物联网三级自动化
Technical Analysis of Comfort and Energy Consumption in Smart Buildings With Three Levels of Automation: Scheduling, Smart Sensors, and IoT
| 作者 | Rahmat Aazami · Mohammad Moradi · Mohammadamin Shirkhani · Ambe Harrison · Saad F. Al-Gahtani · Z. M. S. Elbarbary |
| 期刊 | IEEE Access |
| 出版日期 | 2025年1月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 SiC器件 户用光伏 工商业光伏 |
| 相关度评分 | ★★★★ 4.0 / 5.0 |
| 关键词 | 建筑自动化 能源消耗 居住者舒适度 物联网 暖通空调系统 |
语言:
中文摘要
能源消耗和效率以及居住者福祉是各行业特别是工业和住宅领域的关键全球挑战。多层次建筑自动化在应对这些挑战中发挥关键作用。本研究评估三种不同自动化层次——基于调度、基于传感器和物联网IoT控制,允许清晰对比各系统在管理能耗和增强居住者舒适度方面的有效性。该方法通过识别最优平衡能效与热舒适要求的控制层次简化决策过程,特别是在住宅环境。第四次工业革命标志的IoT集成到建筑控制系统进一步增强这些能力。建筑自动化和控制系统可分为标准和先进系统。传统控制方法无法满足智能建筑日益复杂的需求。然而在智能建筑设计中利用IoT可通过使智能系统更高效、优化资源配置和改善管理能力和服务显著提升生活质量。IoT在智能建筑的关键应用是HVAC系统的高效管理,在降低能耗同时增强居住者舒适度。本文呈现伊拉姆住宅建筑仿真,分析各场景下能耗和居住者舒适度,识别能效和居民福祉的最优条件。
English Abstract
Energy consumption and efficiency, along with occupant well-being, are key global challenges across various sectors, especially in the industrial and residential domains. Building automation, which exists at multiple levels, plays a crucial role in addressing these challenges. This study evaluates three distinct levels of automation—scheduling-based, sensor-based, and IoT-enabled control—allowing a clear comparison of each system’s effectiveness in managing energy consumption and enhancing occupant comfort. This approach simplifies the decision-making process by identifying the level of control that optimally balances energy efficiency with thermal comfort requirements, particularly in residential contexts. The integration of the Internet of Things (IoT) into building control systems, a hallmark of the Fourth Industrial Revolution, further enhances these capabilities. Building automation and control systems can be categorized into standard and advanced systems. Conventional control methods fall short of meeting the increasingly complex demands of smart buildings. However, leveraging IoT in smart building design can significantly enhance quality of life by making smart systems more efficient, optimizing resource allocation, and improving management capabilities and services. A key application of IoT in smart buildings is the efficient management of HVAC (heating, ventilation, and air conditioning) systems, which enhances occupant comfort while reducing energy consumption. This paper presents a simulation of a residential building in Ilam, where energy consumption and occupant comfort levels are analyzed across various scenarios. The study identifies optimal conditions for both energy efficiency and resident well-being. By evaluating a residential building, this research compares energy consumption and comfort across basic scheduling, sensor-based control, and advanced IoT-enabled automation levels. Optimal configurations that improve energy savings and occupant comfort are identified, highlighting the effectiveness of IoT integration in HVAC management. The results demonstrate that advanced automation, particularly IoT-based control, offers significant advantages for energy management and comfort optimization in residential buildings.
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SunView 深度解读
该智能建筑自动化技术对阳光电源户用和工商业光储系统的能量管理有借鉴意义。阳光户用光储解决方案可集成建筑能源管理功能,优化HVAC等负荷用电。IoT控制技术与阳光iSolarCloud平台理念一致。三级自动化对比分析方法可应用于阳光评估不同智能化方案的性价比。能效与舒适度平衡优化对阳光开发用户友好的能量管理策略有指导意义。该研究验证的IoT集成优势,可支撑阳光拓展智能家居和智慧楼宇储能市场,提供综合能源管理解决方案。