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Joint Estimation of TOA and DOA in IR-UWB System Using a Successive MUSIC Algorithm

机译:基于连续MUSIC算法的IR-UWB系统TOA和DOA联合估计

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摘要

Time-of-arrival (TOA) and direction-of-arrival (DOA) are key parameters in the impulse radio ultra wideband (IR-UWB) positioning system with a two-antennas receiver. A two-dimensional (2D) multiple signal classification (MUSIC) algorithm, which requires the 2D spectral peak search, can be used to estimate the parameters, but it has much higher computational complexity. This paper proposes a successive MUSIC algorithm for joint TOA and DOA estimation in IR-UWB system to avoid 2D spectral peak search. The proposed algorithm obtains the initial estimate of TOA corresponding to the first antenna via Root-MUSIC, and simplifies the 2D global search into successive one-dimensional searches to achieve the estimation of TOAs in the two antennas. It then estimates the DOA parameters via the difference of the TOAs between the two antennas. The proposed algorithm can get the parameters paired automatically, and has a much lower complexity than 2D-MUSIC algorithm. In addition, we have derived the mean square error of TOA and DOA estimation of the proposed algorithm and the Cramer-Rao bound of TOA and DOA estimation in the paper. The simulation results show that the parameter estimation performance of the proposed algorithm is better than that of Root-MUSIC, and is almost the same as that of 2D-MUSIC algorithm. Moreover, it has much better performance than matrix pencil algorithm, propagator method and estimation of signal parameters via rotational invariance techniques algorithm.
机译:带有两个天线接收器的脉冲无线超宽带(IR-UWB)定位系统中,到达时间(TOA)和到达方向(DOA)是关键参数。需要二维频谱峰搜索的二维(2D)多信号分类(MUSIC)算法可用于估计参数,但计算复杂度更高。本文提出了一种连续的MUSIC算法,用于IR-UWB系统中TOA和DOA的联合估计,以避免二维频谱峰值搜索。所提出的算法通过Root-MUSIC获得与第一天线对应的TOA的初始估计,并将二维全局搜索简化为连续的一维搜索,以实现两个天线中TOA的估计。然后,它通过两个天线之间的TOA差异估算DOA参数。所提出的算法可以自动获取参数配对,并且其复杂度远低于2D-MUSIC算法。此外,本文还推导了该算法的TOA和DOA估计的均方误差以及TOA和DOA估计的Cramer-Rao界。仿真结果表明,该算法的参数估计性能优于Root-MUSIC算法,与2D-MUSIC算法几乎相同。此外,与矩阵铅笔算法,传播器方法以及通过旋转不变技术算法估计信号参数相比,它具有更好的性能。

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