A New Statistical Model for the Behavior of Ranging Errors in TOA-Based Indoor Localization

M. Heidari, K. Pahlavan
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引用次数: 25

Abstract

In time of arrival (TOA)-based indoor geolocation systems ranging error is a function of the bandwidth of the system and the availability of the direct path between the transmitter and the receiver. With a detected direct path (DDP) conditions and ultra wideband (UWB) transmission, precise range estimates are feasible while in undetected direct path (UDP) conditions large ranging errors occur which can not be cured with the increase of the transmission power or bandwidth. UDP conditions are caused by large metallic objects between the transmitter and the receiver or increase in the distance of the transmitter and the receiver so that the direct path fades away but the receiver still receives signal from other paths. For a given location of the transmitter, with respect to the huge metallic objects, the probability of occurrence of the UDP conditions changes. This paper provides an analytical method for calculation of the overall statistics of the ranging error for different location of the transmitter in a typical indoor environment. Results can be used for the analysis of the performance of precise RF localization techniques for sensor networks. Based on this model we show that the IEEE P802.15.3 recommended model is not adequate to represent the behavior of the ranging errors in typical indoor environments.
基于toa的室内定位测距误差行为统计模型
在基于到达时间(TOA)的室内地理定位系统中,测距误差是系统带宽和发射器和接收器之间直接路径可用性的函数。在可检测的直接路径(DDP)和超宽带(UWB)传输条件下,精确的距离估计是可行的,而在不可检测的直接路径(UDP)条件下,会产生较大的距离误差,并且随着传输功率或带宽的增加而无法消除。UDP条件是由于发射器和接收器之间有较大的金属物体或发射器和接收器的距离增加而导致直接路径消失,但接收器仍然接收来自其他路径的信号。对于发射机的给定位置,相对于巨大的金属物体,UDP条件发生的概率发生变化。本文提供了一种计算典型室内环境下发射机不同位置测距误差总体统计的解析方法。研究结果可用于分析传感器网络精确射频定位技术的性能。基于该模型,我们证明了IEEE P802.15.3推荐的模型不足以表示典型室内环境下测距误差的行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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