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Fast antenna characterization via a sparse spherical multipole expansion

机译:通过稀疏球面多极扩展的快速天线特征

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Reliable spherical antenna characterization at high frequencies requires a considerable amount of time and often leads to the inefficient use of measurement facilities. The proposed method cuts the number of necessary samples for spherical antenna scans by 75% as compared to standard techniques, thus enabling significantly faster scan times without significant loss of accuracy. This is achieved by enforcing sparsity in the spherical multipole expansion through suitable translation and rotation operators. In this context, a novel and accurate method for phase center estimation is established which relies on a 1-norm minimization. Further, an iterative reconstruction algorithm is introduced which allows for reconstruction of undersampled measurement data in a successively optimized coordinate system. Validation using both synthetic and real measurement data demonstrates the capabilities of the proposed method.
机译:高频的可靠球形天线表征需要相当大的时间,并且通常导致测量设施的低效使用。该方法与标准技术相比,将球形天线扫描的必要样本的数量减少75%,从而实现明显更快的扫描时间而无需显着损失精度。这是通过强制通过合适的平移和旋转操作员在球面多极扩展中实施稀疏性来实现的。在这种情况下,建立了一种新颖的和准确的相位估计方法,其依赖于1常数最小化。此外,介绍了一种迭代重建算法,其允许在连续优化的坐标系中重建未采样的测量数据。使用合成和实际测量数据验证验证了所提出的方法的能力。

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