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Imaging of a compact range using autoregressive spectral estimation (radiation patterns measurement)

机译:使用自回归光谱估计(辐射方向图测量)对紧凑范围成像

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The spurious scattering mechanisms of a compact range, which cause spurious signals as well as the desired plane wave to illuminate the test zone, are addressed. It is shown that an accurate estimation of the direction-of-arrival and amplitude of spurious signals in a compact range is beyond the resolution available from the Fourier transform. An estimation technique based on autoregressive (AR) modeling of field probe data is developed to locate and quantify the spurious signal sources. The probe aperture is divided into a number of overlapping subapertures so that the far-field criterion for each subaperture is satisfied. Then, the subaperture data are modeled as an AR process. Singular value decomposition and forward-backward linear prediction are used to estimate the model order and the AR parameters. Examples of probe measurements and analysis for an actual compact range are given.
机译:解决了小范围的寄生散射机制,该机制会导致寄生信号以及所需的平面波照亮测试区域。结果表明,在紧凑范围内对杂散信号的到达方向和幅度的准确估计超出了傅立叶变换提供的分辨率。基于现场探测数据的自回归(AR)建模的估计技术被开发出来,以定位和量化虚假信号源。探针孔径被分为多个重叠的子孔径,从而满足每个子孔径的远场标准。然后,将子孔径数据建模为AR处理。奇异值分解和前后线性预测用于估计模型阶数和AR参数。给出了实际紧凑范围内的探头测量和分析示例。

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