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Indoor Localization Using 802.11 Time Differences of Arrival

机译:使用802.11到达时间差进行室内定位

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This paper proposes a novel time-based method for determining the position of an IEEE 802.11g transmitter using multiple mutually synchronized 802.11g receivers. By means of baseband signal processing, the proposed algorithm obtains a high-resolution estimate of the time of arrival (TOA) of the long training sequence symbol at each receiver. An estimate of the position of the transmitter is obtained based on the estimation of the time differences of arrival (TDOA) of the symbols and the known fixed locations of the receivers. This paper investigates the effects of carrier and sampling clock offsets, in both frequency and phase, between nodes on the TOA and TDOA estimation error. In real-world experiments in a line of sight, low multipath indoor environment, the method was found to achieve mean errors of 42 cm per symbol for 1-D and 1.39 m per symbol for 2-D position estimation, for ranges of up to 25 m.
机译:本文提出了一种新颖的基于时间的方法,用于使用多个相互同步的802.11g接收器确定IEEE 802.11g发送器的位置。通过基带信号处理,所提出的算法获得了长训练序列符号在每个接收器处的到达时间(TOA)的高分辨率估计。基于符号的到达时间差(TDOA)和接收器的已知固定位置的估计来获得发射器的位置的估计。本文研究了节点之间的载波和采样时钟偏移在频率和相位上对TOA和TDOA估计误差的影响。在视线较低的多径室内环境中进行的实际实验中,发现该方法在1-D位置的平均误差为42 cm /符号,在2-D位置估计的平均误差为1.39 m(范围)。 25米

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