Time-of-flight-based range measurements among transceivers with different clocks requires ranging protocols that accommodate for the varying rates of the clocks. Double-sided two-way ranging (DS-TWR) has recently been widely adopted as a standard protocol due to its accuracy; however, the precision of DS-TWR has not been clearly addressed. In this paper, an analytical model of the variance of DS-TWR is derived as a function of the user-programmed response delays. Consequently, this allows formulating an optimization problem over the response delays in order to maximize the information gained from range measurements by addressing the effect of varying the response delays on the precision and frequency of the measurements. The derived analytical variance model and proposed optimization formulation are validated experimentally with 2 ranging UWB transceivers, where 29 million range measurements are collected.
翻译:对不同时数的收发报机的飞行时间测距测量需要考虑到不同时数的不同速度的测距规程。最近广泛采用双向双向双向测距(DS-TWR)作为标准规程,因为它的准确性;然而,DS-TWR的精确性没有得到明确处理。在本文件中,对DS-TWR差异的分析模型是因用户计划的反应延迟而得出的,因此,在反应延迟方面形成一个优化问题,以便通过处理不同反应延迟对测量的精确性和频率的影响,使从范围测距中获得的信息最大化。产生的分析差异模型和拟议的优化配方得到实验性验证,在2个范围有2 900万个的UNWB收发报机中收集了2 900万个测距的测距。