Han Yuxiang, Zhang Xiaoming, Lai Zhengxi, Geng Yuchen
National Key Laboratory for Electronic Measurement Technology, North University of China, Taiyuan 030051, China.
Key Laboratory of Instrumentation Science & Dynamic Measure, Ministry of Education, North University of China, Taiyuan 030051, China.
Sensors (Basel). 2021 Sep 23;21(19):6359. doi: 10.3390/s21196359.
To solve the problem of heavy workload and high cost when acquiring the position of Ultra-Wideband (UWB) mobile base stations in sports fields, a fast self-positioning algorithm for UWB mobile base stations algorithm based on Time of Flight (TOF) is proposed. First, according to the layout of the base stations in the sports field, the local coordinate system is determined, and an equation based on the ranging information between the base stations is established; the Least Square method is used to calculate the coordinates of each base station, and the Newton Iteration method is used to converge the positioning results. Then the origin and propagation law of positioning error, as well as the method of reducing the positioning error are analyzed. The simulation data and experimental results show that the average positioning accuracy of the mobile base station is within 0.05 m, which meets the expected accuracy of the base station position measurement. Compared with traditional manual measurement methods, base station self-positioning can effectively save deployment time and reduce workload.
为解决在体育场馆中获取超宽带(UWB)移动基站位置时工作量大、成本高的问题,提出了一种基于飞行时间(TOF)的UWB移动基站快速自定位算法。首先,根据体育场馆中基站的布局确定局部坐标系,建立基于基站间测距信息的方程;采用最小二乘法计算各基站的坐标,并使用牛顿迭代法使定位结果收敛。然后分析了定位误差的来源和传播规律,以及减小定位误差的方法。仿真数据和实验结果表明,移动基站的平均定位精度在0.05 m以内,满足基站位置测量的预期精度。与传统的人工测量方法相比,基站自定位可以有效节省部署时间并减少工作量。