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Compressed sensing applied to spherical near-field to far-field transformation

机译:压缩感测应用于球形近场到远场转换

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A main drawback of near-field measurement techniques is the long measurement time which is a strong limiting factor in many measurements. The reason for this is the large number of required measurement points and a reduction without loss of accuracy is hence desirable. In many spherical near-field measurements the relevant information is mostly concentrated in a few spherical wave coefficients. Methods from compressed sensing (CS) exploit this structure to reduce measurement efforts if it is properly adapted to the theory of spherical near-field to far-field transformation. In this paper, requirements and challenges of CS application in this problem will be summarized and discussed. Simulation results indicate the potential capabilities of CS although further research is needed to provide the theoretical guarantees and to investigate limitations and uncertainties.
机译:近场测量技术的主要缺点是测量时间长,这是许多测量中的强大限制因素。其原因是需要大量的测量点,因此希望在不损失精度的情况下进行减小。在许多球面近场测量中,相关信息主要集中在几个球面波系数中。如果压缩传感(CS)适合于球面近场到远场转换的理论,则可以利用这种结构来减少测量工作。在本文中,将总结并讨论CS在该问题中的应用要求和挑战。仿真结果表明了CS的潜在能力,尽管需要进行进一步的研究以提供理论上的保证,并研究局限性和不确定性。

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