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Estimating the Parameters of Multiple Wideband Polynomial-Phase Signals in Sensor Arrays using Spatial Time-Frequency Distributions

机译:使用空间时频分布估算传感器阵列中多个宽带多项式信号的参数

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A new algorithm for estimating the parameters of multiple wideband polynomial-phase signals (PPSs) in sensor arrays is developed. The spatial high-order instantaneous moments (SHIMs) are first defined using a nonlinear transformation of the array snapshot vectors. Then, the properties of SHIMs of multiple wideband PPSs are employed to obtain recursive estimates of the PPS frequency parameters. The time-frequency properties of SHIMs are then exploited for estimating the source directions-of-arrival (DOAs) using spatial time-frequency distributions (STFDs). The proposed algorithm is shown to have an improved performance compared to the chirp beamformer technique. Since our algorithm is based on multiple one-dimensional searches, it also offers a much simpler implementation avoiding multi-dimensional search, which is needed for other algorithms
机译:开发了一种估计传感器阵列中多个宽带多项式相位信号(PPS)参数的新算法。首先使用数组快照向量的非线性变换来定义空间高阶瞬时矩(SHIM)。然后,采用多个宽带PPS的SHIM的属性来获得PPS频率参数的递归估计。然后利用SHIM的时频特性,使用空间时频分布(STFD)估计源到达方向(DOA)。与线性调频波束形成器技术相比,该算法具有改进的性能。由于我们的算法基于多个一维搜索,因此它还提供了更简单的实现方式,避免了其他算法所需的多维搜索

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