Intelligent construction design of high-rise steel structures based on multi-objective positioning algorithm and wireless sensor network
摘要
With the acceleration of urbanization, the construction scale and complexity of high-rise buildings increase. In order to solve this problem, this study aims to explore the intelligent construction design based on multi-objective positioning algorithm and wireless sensor network (WSN) to improve the efficiency and safety of high-rise steel structure construction. An integrated wireless sensor network system is developed, which uses a variety of sensor nodes to monitor the environmental parameters and structural health status of the construction site in real time. The positioning accuracy of sensor nodes and the reliability of data transmission are improved by the multi-target positioning algorithm. After data collection, real-time information is transmitted to the construction management platform through the mobile network to realize dynamic monitoring and intelligent decision support for the construction process. The results show that the proposed scheme can significantly improve the information transparency and resource allocation efficiency of the construction site, accelerate the construction schedule compared with the traditional method, and show good response ability in the early warning of safety accidents. The application of sensor network effectively reduces the risk of construction personnel and improves the construction quality. Therefore, the intelligent construction design based on wireless sensor network and multi-objective positioning algorithm provides an innovative solution for high-rise building steel structure construction, promotes the development of intelligent building construction, and has a wide range of application prospects and practical significance.