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A Real-Time Recording Model of Key Indicators for Energy Consumption and Carbon Emissions of Sustainable Buildings

机译:可持续建筑能耗和碳排放关键指标的实时记录模型

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摘要

Buildings' sustainability is one of the crucial parts for achieving urban sustainability. Applied to buildings, life-cycle assessment encompasses the analysis and assessment of the environmental effects of building materials, components and assemblies throughout the entire life of the building construction, use and demolition. Estimate of carbon emissions is essential and crucial for an accurate and reasonable life-cycle assessment. Addressing the need for more research into integrating analysis of real-time and automatic recording of key indicators for a more accurate calculation and comparison, this paper aims to design a real-time recording model of these crucial indicators concerning the calculation and estimation of energy use and carbon emissions of buildings based on a Radio Frequency Identification (RFID)-based system. The architecture of the RFID-based carbon emission recording/tracking system, which contains four functional layers including data record layer, data collection/update layer, data aggregation layer and data sharing/backup layer, is presented. Each of these layers is formed by RFID or network devices and sub-systems that operate at a specific level. In the end, a proof-of-concept system is developed to illustrate the implementation of the proposed architecture and demonstrate the feasibility of the design. This study would provide the technical solution for real-time recording system of building carbon emissions and thus is of great significance and importance to improve urban sustainability.
机译:建筑物的可持续性是实现城市可持续性的关键部分之一。生命周期评估适用于建筑物,包括在建筑物建造,使用和拆除的整个生命周期中对建筑材料,组件和组件的环境影响进行分析和评估。碳排放量的估算对于准确,合理的生命周期评估至关重要。为了满足对关键指标的实时分析和自动记录的集成分析以进行更准确的计算和比较需要进行更多研究的需要,本文旨在设计这些关键指标的实时记录模型,这些模型涉及能耗和估算基于基于射频识别(RFID)的系统的建筑物的碳排放量。提出了基于RFID的碳排放记录/跟踪系统的体系结构,该体系结构包含四个功能层,包括数据记录层,数据收集/更新层,数据聚集层和数据共享/备份层。这些层中的每一层都由在特定级别运行的RFID或网络设备和子系统组成。最后,开发了概念验证系统来说明所提出的体系结构的实现并证明设计的可行性。该研究将为建筑碳排放实时记录系统提供技术解决方案,因此对提高城市可持续性具有重要意义。

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