精确室内定位系统在真实环境下的测量

M. Pola, Luděk Zaplatílek, P. Bezousek
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引用次数: 2

摘要

帕尔杜比采大学目前正在为消防员和机器人平台开发一种精确的室内定位系统。本文介绍了该系统在测试硬件信号链上的测量方法。后期论文[2]中阐述的信号已经产生并发送到两个接收站。电缆和空气被用于信号传输。对两个接收站的信号进行了处理,并估计了距离差(DOD)。DOD有两种获取方法——已知信号方向图的互相关法(Corr)和光谱分析法(SAM)[2]。结果表明,该信号处理具有很高的鲁棒性,使系统精度达到亚米级。当使用电缆测量时,使用Corr方法证明了平均DOD误差为24.5 cm。通过空气测量时,用SAM法测得的最大平均DOD误差为34 cm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Measurement on precise indoor positioning system in the real environment
At the University of Pardubice there is currently developed a precise indoor positioning system intended for fire fighters and robotic platforms. In this paper the measurement on such a system on the test HW signal chain is presented. Signal developed in the late paper [2] had been generated and sent to two receiver stations. Cables and air was used for the signal transmission. Signal from the both receiver's stations was processed and the Difference of distances (DOD) was estimated. There were two ways of obtaining the DOD - a cross correlation method with the known signal pattern (Corr) and a spectral analysis method (SAM) [2]. The signal processing was shown to be highly robust leading to the system sub-meter accuracy. When measuring with cables, an average DOD error of 24.5 cm was demonstrated using the Corr method. For the measurement through the air the maximum average DOD error of 34 cm was reached by the SAM method.
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