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Optical tomography based on nonredundant array scanning holography 被引量:1
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作者 孙萍 谢敬辉 周元林 《Chinese Optics Letters》 SCIE EI CAS CSCD 2003年第6期343-345,共3页
A novel technique termed nonredundant array scanning holography based on the principle of optical heterodyne scanning holography and the tomographic technique of coded aperture imaging is proposed. The system designed... A novel technique termed nonredundant array scanning holography based on the principle of optical heterodyne scanning holography and the tomographic technique of coded aperture imaging is proposed. The system designed in terms of this technique codes an object optically and decodes its coded image digitally. It can realize optical tomograms of three-dimensional objects. It also has potentially practical value due to its compact structure. The computer simulations present the principle of the technique. Some experiments at the proof-principle level are performed to test the principle. 展开更多
关键词 NRA as Optical tomography based on nonredundant array scanning holography of PSF that with into on
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Spherical Near-Field - Far-Field Transformation for Quasi-Planar Antennas from Irregularly Spaced Data
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作者 Francesco D’ Agostino Flaminio Ferrara +2 位作者 Claudio Gennarelli Rocco Guerriero Massimo Migliozzi 《Journal of Electromagnetic Analysis and Applications》 2012年第4期147-155,共9页
An effective near-field - far-field (NF - FF) transformation with spherical scanning for quasi-planar antennas from irregularly spaced data is developed in this paper. Two efficient approaches for evaluating the regul... An effective near-field - far-field (NF - FF) transformation with spherical scanning for quasi-planar antennas from irregularly spaced data is developed in this paper. Two efficient approaches for evaluating the regularly spaced spherical samples from the nonuniformly distributed ones are proposed and numerically compared. Both the approaches rely on a nonredundant sampling representation of the voltage measured by the probe, based on an oblate ellipsoidal modelling of the antenna under test. The former employs the singular value decomposition method to reconstruct the NF data at the points fixed by the nonredundant sampling representation and can be applied when the irregularly acquired samples lie on nonuniform parallels. The latter is based on an iterative technique and can be used also when such a hypothesis does not hold, but requires the existence of a biunique correspondence between the uniform and nonuniform samples, associ- ating at each uniform sampling point the nearest irregular one. Once the regularly spaced spherical samples have been recovered, the NF data needed by a probe compensated NF - FF transformation with spherical scanning are efficiently evaluated by using an optimal sampling interpolation algorithm. It is so possible to accurately compensate known posi- tioning errors in the NF - FF transformation with spherical scanning for quasi-planar antennas. Some numerical tests assessing the accuracy and the robustness of the proposed approaches are reported. 展开更多
关键词 Antenna Measurements NEAR-FIELD - FAR-FIELD TRANSFORMATIONS SPHERICAL Scanning nonredundant Sampling REPRESENTATIONS of Electromagnetic Fields Probe Positioning ERRORS Compensation
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Far-Field Pattern Reconstruction from Positioning Errors Affected Near-Field Data Acquired via Helicoidal Scanning
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作者 Francesco D’Agostin Flaminio Ferrara +2 位作者 Claudio Gennarelli Rocco Guerriero Massimo Migliozzi 《Journal of Electromagnetic Analysis and Applications》 2012年第2期60-68,共9页
In this paper, an effective technique to compensate the positioning errors in a near-field—far-field (NF-FF) transformation with helicoidal scanning for elongated antennas is presented and validated both numerically ... In this paper, an effective technique to compensate the positioning errors in a near-field—far-field (NF-FF) transformation with helicoidal scanning for elongated antennas is presented and validated both numerically and experimentally. It relies on a nonredundant sampling representation of the voltage measured by the probe, obtained by considering the antenna as enclosed in a cylinder ended in two half-spheres. An iterative scheme is used to reconstruct the helicoidal NF data at the points fixed by the representation from the acquired irregularly spaced ones. Once the helicoidal data have been retrieved, those needed by a classical NF-FF transformation with cylindrical scanning are efficiently evaluated by using an optimal sampling interpolation algorithm. Some numerical tests, assessing the accuracy of the approach and its stability with respect to random errors affecting the data, are reported. Experimental tests performed at the Antenna Characterization Lab of the University of Salerno further confirm the validity of the proposed technique. 展开更多
关键词 Antenna Measurements Near-Field—Far-Field TRANSFORMATIONS Helicoidal SCANNING nonredundant Sampling REPRESENTATIONS of Electromagnetic Fields Probe Positioning Errors Compensation
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