基于城市信息建模和智能传感器网络的建筑微改造数据分析

J. Sensors Pub Date : 2022-08-22 DOI:10.1155/2022/4384795
Dongfang Zhang, Zhennan Li, Wei Sun, Xuehua Zhu, Hui Ge
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引用次数: 0

摘要

建筑微改造是指在保持现有建筑格局基本不变的前提下,通过局部拆除、修复、保存、功能替换、改造、改善、保护、装饰、活化等方式实施的建筑更新方式。城市信息建模(CIM)技术为精细化城市治理和智慧城市建设提供了全要素的立体空间层;智能传感器网络技术的数据层通过与设施层的对接,实现多源数据的聚合,并对集成的数据资源进行分类。本研究在总结和分析前人研究成果的基础上,阐述了建筑微改造数据分析的研究现状和意义,阐述了CIM和SSN的发展背景、现状和未来展望,介绍了信息资源的聚合和分割以及多源数据的聚合和互联的方法和原理。对原建筑进行特征提取和数据存储,对微改造进行方案设计和信息分类,对基于CIM和SSN的建筑微改造进行数据提取和模型构建,对建筑外观改进进行数据分析,对建筑功能替换进行数据分析,对基于CIM和SSN的建筑微改造进行数据库建立和数据分析。最后以某中学两层教学楼为例进行了案例应用和结果分析。研究结果表明:CIM技术可以为建筑微改造提供几何、物理、结构、规则等建筑实际数据信息;SSN技术大大减少了建筑微改造施工中由于控制系统的重新布线所带来的大量工作。CIM与SSN的结合,可以通过各种数据空间关系和空间编码,有效连接建筑微装修中的各种实体元素,形成主题库,实现空间数据与非空间数据的多维连接。基于CIM和SSN的建筑微改造数据分析包括成果、流程、资源、特征、应用等多个维度,更符合CIM集成应用,更便于现实的信息交换和共享应用。
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Data Analysis of Building Microrenovation Based on City Information Modeling and Smart Sensor Networks
Building microrenovation refers to the building renewal method implemented through partial demolition, repair, preservation, function replacement, renovation, improvement, protection, decoration, and activation under the premise of maintaining the current construction pattern basically unchanged. City information modeling (CIM) technology provides a three-dimensional space floor with all elements for refined city governance and smart city construction; the data layers of smart sensor network (SSN) technology can aggregate multisource data by docking with facility layers and can classify integrated data resources. On the basis of summarizing and analyzing the previous research results, this study expounded the research status and significance of data analysis of building microrenovation, elaborated the development background, current status, and future outlooks of CIM and SSN, introduced the methods and principles of the aggregation and segmentation of information resources and the aggregation and interconnection of multisource data, performed the feature extraction and data storage of the original buildings, conducted the scheme design and information classification of microrenovation, implemented the data extraction and model construction of building microrenovation based on CIM and SSN, performed the data analysis of building appearance improvement, conducted the data analysis of building function replacement, implemented the database establishment and data analysis of building microrenovation based on CIM and SSN, and finally carried out a case application and its result analysis by taking a middle school two-story teaching building as an example. The study results show that the CIM technology can provide buildings’ actual data information such as geometry, physics, structure, and rules for building microrenovation; the SSN technology greatly reduces a lot of work caused by the rewiring of control system in the construction of building microrenovation. The combination of CIM and SSN can effectively connect various entity elements in building microrenovation to form a theme library through various data spatial relationships and spatial coding, realizing the connection of spatial data and nonspatial data in multiple dimensions. The data analysis of building microrenovation based on CIM and SSN includes multiple dimensions of achievements, processes, resources, characteristics, and applications, which is more in line with CIM integration applications and is easier for realistic information exchange and sharing applications.
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