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首页> 外文期刊>Sensors Journal, IEEE >Low-Complexity Range-Azimuth FMCW Radar Sensor Using Joint Angle and Delay Estimation Without SVD and EVD
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Low-Complexity Range-Azimuth FMCW Radar Sensor Using Joint Angle and Delay Estimation Without SVD and EVD

机译:使用联合角和延迟估计的低复杂度方位角FMCW雷达传感器,无SVD和EVD

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摘要

A low complexity range-azimuth frequency-modulated continuous-waveform (FMCW) radar sensor using joint angle and delay estimation method without singular value decomposition (SVD) and eigenvalue decomposition (EVD) is presented in this paper. Conventional joint angle and delay estimation techniques exploit the dual-shift-invariant structure of received signals through matrix decompositions, such as SVD and EVD, which increases the computational burden. The proposed method utilizes the dual-shift-invariant structure through matrix inversion and performs angle and delay estimation using extended one-dimensional pseudospectrum searching instead of two-dimensional pseudospectrum searching to reduce the computational complexity. We demonstrate the effectiveness of the proposed method through Monte-Carlo simulations. The proposed algorithm is also verified by processing real FMCW data collected in an anechoic chamber.
机译:提出了一种采用联合角和时延估计方法的低复杂度范围方位角频率调制连续波形(FMCW)雷达传感器,没有奇异值分解(SVD)和特征值分解(EVD)。常规的关节角度和延迟估计技术通过诸如SVD和EVD的矩阵分解来利用接收信号的双频不变结构,这增加了计算负担。所提出的方法通过矩阵求逆利用双移位不变结构,并使用扩展的一维伪谱搜索而不是二维伪谱搜索来执行角度和延迟估计,从而降低了计算复杂度。我们通过蒙特卡洛仿真证明了该方法的有效性。通过处理在消声室中收集的实际FMCW数据,也验证了所提出的算法。

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