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A Cyclostationarity Based Esprit Algorithm for DOA Estimation of Uniform Circular Array

机译:基于纤细的循环阵列DOA估计的蠕动基于eSPrit算法

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For the direction of arrival (DOA) estimation of cyclosationary signals in uniform circular array (UCA), a signal selective Least-Squares Estimation method of Signal Parameters via Rotational Invariance Techniques (LS-ESPRIT) with high estimation accuracy and low complexity is proposed. Firstly, the proposed algorithm transforms the UCA to a virtual uniform linear array (ULA) by using phase mode excitation. In addition, the beam transformation is combined with the cyclostationarity to suppress both interference and noise and improve the signal selection ability. Moreover, to reduce the complexity of DOA estimation, the signal subspace is decomposed by the LSESPRIT algorithm to estimate elevation and azimuth angles. Simulation results demonstrate the effectiveness of the proposed algorithm.
机译:对于均匀圆形阵列(UCA)的旋转信号的到达方向(DOA)估计,提出了一种通过具有高估计精度和低复杂度的旋转不变技术(LS-ESPRIT)信号参数的信号选择性最小二乘估计方法。 首先,通过使用相位模式激励,所提出的算法将UCA转换为虚拟均匀线性阵列(ULA)。 另外,光束变换与循环棘轮性相结合以抑制干扰和噪声并提高信号选择能力。 此外,为了降低DOA估计的复杂性,信号子空间由LSESprit算法分解以估计高度和方位角。 仿真结果证明了所提出的算法的有效性。

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