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A New Simultaneous Estimation of Directions of Arrival and Channel Parameters in a Multipath Environment

机译:多径环境下到达和信道参数方向的新同时估计

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In this paper, we present two new blind techniques for simultaneous estimation of the direction-of-arrival (DOA) and the channel parameters for a uniform linear array in a multipath environment. The first method is based on the sum of weighted complex exponentials and Pade approximation, and the second method determines the transfer function of a linear time-invariant system given its impulse response. For each method, we introduce a rational function whose complex poles contain the desired DOA, the magnitude of its residues are the channel gains, and the phase of its residues are in terms of the channel delays. We also derive and numerically evaluate the pertinent Cramer-Rao lower bound (CRLB) for the estimation process. Our error analysis based on a perturbation series formulation of the parameter estimation reveals that DOA and the channel parameters are extracted from a Gaussian signal-dependent noise. For both methods, the amount of computations are also determined. Some simulations are provided to assess the capabilities of the new methods.
机译:在本文中,我们提出了两种新的盲技术,用于同时估计多径环境中均匀线性阵列的到达方向(DOA)和通道参数。第一种方法基于加权复指数和Pade近似值的总和,第二种方法根据线性时不变系统的脉冲响应来确定其传递函​​数。对于每种方法,我们引入一个有理函数,该函数的复数极点包含所需的DOA,其残差的大小是通道增益,并且其残差的相位取决于通道延迟。我们还推导并在数值上评估估计过程的相关Cramer-Rao下界(CRLB)。我们基于参数估计的扰动级数公式进行的误差分析表明,DOA和通道参数是从高斯信号相关噪声中提取的。对于这两种方法,还确定了计算量。提供了一些模拟来评估新方法的功能。

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