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Dynamic LOS/NLOS Statistical Discrimination of Wireless Mobile Channels

机译:无线移动信道的动态LOS / NLOS统计区分

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This paper presents the problem of identifying whether a received signal at a base station is due to a line-of-sight (LOS) transmission or not (NLOS). This is a first step towards estimating the mobile station''s location. We formulate the NLOS identification problem as a binary hypothesis test by exploiting the Rician factor estimation. In particular, results from wireless environments with simulated geometry showed that the new test can decide for a LOS or NLOS condition using a small amount of samples. Therefore, changes from NLOS to LOS propagation can also be tracked quickly. This information is of high significance for location purposes in a wireless cellular network since time-of-arrival (TOA) and time-difference-of-arrival (TDOA) information based on LOS connections can be weighted stronger in a location computing algorithm and hence can lead to higher positioning accuracy. Otherwise, if the connection is identified as NLOS it can be useful to adopt a 2-D signal processing (space-time processing) strategy with an antenna array, instead of using the high complexity of the TOA and TDOA methods.
机译:本文提出了识别基站接收信号是否是由于视线(LOS)传输(NLOS)引起的问题。这是估算移动站位置的第一步。我们利用Rician因子估计将NLOS识别问题公式化为二元假设检验。特别是,具有模拟几何形状的无线环境的结果表明,新测试可以使用少量样本确定LOS或NLOS条件。因此,也可以快速跟踪从NLOS到LOS传播的变化。该信息对于无线蜂窝网络中的定位目的具有重要意义,因为基于LOS连接的到达时间(TOA)和到达时间差(TDOA)信息在位置计算算法中可以得到更强的加权,因此会导致更高的定位精度。否则,如果将连接标识为NLOS,则可以采用带有天线阵列的2-D信号处理(时空处理)策略,而不是使用TOA和TDOA方法的高复杂性,这很有用。

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