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Wideband angle of arrival estimation of chirp signals using virtual Wignerville distribution

机译:使用虚拟Wignerville分布估算线性调频信号的宽带到达角

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摘要

To estimate the angle of arrivals (AOA) of wideband chirp sources, a new time-frequency algorithm is proposed. In this method, virtual sensors are constructed based on the fact that the steering vectors of wideband chirp signals are linear and vary with time. And the randon Wignersville distribution (RWVD) of real sensors and virtual sensors are calculated to yield the new time-invariable steering vectors, furthermore, the noise and cross terms are suppressed. In addition, the multiple chirp signals are selected by their time-frequency points. The cost of computation is lower than the common AOA estimation methods of wideband sources due to nonrequirement of frequency focusing, interpolating and matrix decomposition, including subspace decomposition. Under the lower signal noise ratio (SNR) condition, the proposed method exhibits better precision than the method of frequency focusing (FF). The proposed method can be further applied to nonuniform linear array (NLA) since it is not confined to the array geometry. Simulation results illustrate the efficacy of the proposed method.
机译:为了估计宽带chi源的到达角(AOA),提出了一种新的时频算法。在该方法中,基于宽带线性调频信号的导引矢量是线性且随时间变化的事实构造虚拟传感器。并且计算真实传感器和虚拟传感器的randon Wignersville分布(RWVD)以产生新的时间不变的转向矢量,此外,噪声和交叉项也得到了抑制。另外,多个线性调频信号通过其时频点来选择。由于不需要频率聚焦,内插和矩阵分解(包括子空间分解),因此计算成本低于宽带资源的常用AOA估计方法。在较低的信噪比(SNR)条件下,与频率聚焦(FF)方法相比,该方法具有更好的精度。所提出的方法可以进一步应用于非均匀线性阵列(NLA),因为它不限于阵列几何形状。仿真结果说明了该方法的有效性。

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