Spatial Diversity in Signal Strength based WLAN Location Determination Systems

A. Ramachandran, S. Jagannathan
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引用次数: 23

Abstract

Literature indicates that spatial diversity can be utilized to compensate channel uncertainties such as multipath fading. Therefore, in this paper, spatial diversity is exploited for locating stationary and mobile objects in the indoor environment. First, space diversity technique is introduced for small scale motion and temporal variation compensation of received signal strength and it is demonstrated analytically that it enhances location accuracy. Small scale motion refers to movements of the transmitter and/or the receiver of the order of sub-wavelengths while temporal effects refer to environmental variations with time. A novel metric is introduced for selection combining in order to improve location accuracy through the addition of spatial diversity upon two available location determination schemes. The results are evaluated experimentally against single antenna system for reception by using low cost wireless RF devices such as motes. Alternatively, the impact of the number of location determination devices in a probabilistic WLAN network based on pre-profiling of signal strength is analyzed and it is demonstrated analytically that location accuracy improves with the number of receivers used. Spatial diversity in terms of the antenna spacing of 2lambda is evaluated and shown to provide a reduction in location determination error between 30 and 40% when compared to a single antenna system.
基于信号强度的WLAN定位系统的空间分集
文献表明,空间分集可以用来补偿信道的不确定性,如多径衰落。因此,本文利用空间分异来定位室内环境中的静止和移动物体。首先,介绍了空间分集技术对接收信号强度的小尺度运动和时间变化进行补偿,分析证明了该技术提高了定位精度。小尺度运动是指发射机和(或)接收机在亚波长量级的运动,而时间效应是指环境随时间的变化。为了提高定位精度,在现有的两种定位方案的基础上,引入了一种新的选择组合度量。通过使用低成本无线射频设备(如mote)对单天线系统的接收结果进行了实验评估。或者,分析了基于信号强度预分析的概率WLAN网络中位置确定设备数量的影响,并分析地证明了位置精度随着使用的接收器数量的增加而提高。对天线间距为2lambda的空间分集进行了评估,结果表明,与单天线系统相比,该系统可将定位误差降低30%至40%。
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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