Li Ke, Huang Chen, Liang Jiaping, Zou Yanbin, Xu Biao, Yao Yao, Zhang Yang, Liu Dandan
Department of Electronic Engineering, Shantou University, Shantou 515041, China.
Naval Research Academy, Beijing 100161, China.
Sensors (Basel). 2023 Sep 5;23(18):7664. doi: 10.3390/s23187664.
High-rise building fires pose a serious threat to the lives and property safety of people. The lack of reliable and accurate positioning means is one of the main difficulties faced by rescuers. In the absence of prior knowledge of the high-rise building fire environment, the coverage deployment of mobile base stations is a challenging problem that has not received much attention in the literature. This paper studies the problem of the autonomous optimal deployment of base stations in high-rise building fire environments based on a UAV group. A novel problem formulation is proposed that solves the non-line-of-sight (NLOS) positioning problem in complex and unknown environments. The purpose of this paper is to realize the coverage and deployment of mobile base stations in complex and unknown fire environments. The NLOS positioning problem in the fire field environment is turned into the line-of-sight (LOS) positioning problem through the optimization algorithm. And there are more than three LOS base stations nearby at any point in the fire field. A control law which is formulated in a mathematically precise problem statement is developed that guarantees to meet mobile base stations' deployment goals and to avoid collision. Finally, the positioning accuracy of our method and that of the common method were compared under many different cases. The simulation result showed that the positioning error of a simulated firefighter in the fire field environment was improved from more than 10 m (the positioning error of the traditional method) to less than 1 m.
高层建筑火灾对人们的生命和财产安全构成严重威胁。缺乏可靠且准确的定位手段是救援人员面临的主要困难之一。在对高层建筑火灾环境缺乏先验知识的情况下,移动基站的覆盖部署是一个具有挑战性的问题,在文献中尚未受到太多关注。本文研究基于无人机群的高层建筑火灾环境中基站的自主优化部署问题。提出了一种新颖的问题表述方式,解决了复杂未知环境中的非视距(NLOS)定位问题。本文的目的是在复杂未知的火灾环境中实现移动基站的覆盖和部署。通过优化算法将火场环境中的NLOS定位问题转化为视距(LOS)定位问题。并且在火场中的任何一点附近都有三个以上的LOS基站。制定了一种在数学上精确的问题陈述中表述的控制律,以确保满足移动基站的部署目标并避免碰撞。最后,在多种不同情况下比较了我们的方法与常用方法的定位精度。仿真结果表明,火场环境中模拟消防员的定位误差从超过10米(传统方法的定位误差)提高到了小于1米。