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Grating lobes suppression method for stepped frequency GB-SAR system 被引量:3
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作者 Tao Zeng Cong Mao +3 位作者 Cheng Hu Mao Zhu Weiming Tian Jingjing Ren 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2014年第6期987-995,共9页
A grating lobes suppression method for chirp-subpulse stepped frequency(CSSF) signals is proposed, which is applied to deformation monitoring using the ground based synthetic aperture radar(GB-SAR) system. This me... A grating lobes suppression method for chirp-subpulse stepped frequency(CSSF) signals is proposed, which is applied to deformation monitoring using the ground based synthetic aperture radar(GB-SAR) system. This method is based on accurate estimation and correction of the phase and amplitude error along two dimensions(range and azimuth), i.e., the error estimation inside the subpulse(in-subpulse error) and across the stepped frequency subpulses(cross-subpulse error) of transmitted CSSF signals. Validated both with simulated data and experimental data recorded in the deformation monitoring campaign, it can be seen that the method as well as the relative conclusions can be fully and effectively applied to most of the stepped frequency systems. 展开更多
关键词 chirp-subpulse stepped frequency signal(CSSF) sup-pression of grating lobes ground based synthetic aperture radar differential interferometer SAR error analysis
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Design of multi-band frequency selective surfaces using multi-periodicity combined elements 被引量:1
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作者 Lu Mingyun Huang Minjie Wu Zhe 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2009年第4期675-680,共6页
Traditional multi-band frequency selective surface (FSS) approaches are hard to achieve a perfect resonance response in a wide band due to the limit of the onset grating lobe frequency determined by the array. To so... Traditional multi-band frequency selective surface (FSS) approaches are hard to achieve a perfect resonance response in a wide band due to the limit of the onset grating lobe frequency determined by the array. To solve this problem, an approach of combining elements in different period to build a hybrid array is presented. The results of series of numerical simulation show that multi-periodicity combined element FSS, which are designed using this approach, usually have much weaker grating lobes than the traditional FSS. Furthermore, their frequency response can be well predicted through the properties of their member element FSS. A prediction method for estimating the degree of expected grating lobe energy loss in designing multi-band FSS using this approach is provided. 展开更多
关键词 frequency selective surface MULTI-BAND grating lobe multi-periodicity combined element
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Large Spacing Array with Offset Phase Center Elements for Highly Integrated Applications 被引量:1
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作者 Hailing Jiang Hui Tian +1 位作者 Shubo Dun Junyi Zhang 《China Communications》 SCIE CSCD 2022年第5期231-240,共10页
A scanning and uniform array architecture with large spacing,low complexity and high scalability is presented for high integration massive array applications.It is constructed by offset phase center elements arranged ... A scanning and uniform array architecture with large spacing,low complexity and high scalability is presented for high integration massive array applications.It is constructed by offset phase center elements arranged in a uniform and regular way,but its spacing can be larger than that of traditional arrays.An ideal model of the offset phase center element is established and its far-field distribution is derived.To suppress grating lobes,the phase center of any element is designed to be movable without changing its physical position.Using genetic algorithm(GA),a new constraint condition limiting the number of phase center changes is proposed to solve the objective function of the minimum values of grating lobes(GLs)and side lobes(SLs).It is shown that the optimal results can be achieved by two changes of phase centers.A multimode circular patch is developed and designed,and characteristics of the offset phase center are analyzed and verified.A prototype array of 12×12 offset phase center elements is implemented based on multi-mode circular patches.Full wave simulation results of radiation patterns show that the level of grating lobes is suppressed at least 7dB with 1.12λ spacing,while the scanning angle is 20°. 展开更多
关键词 massive array offset phase center array grating lobe reduction genetic algorithm multi-mode circular patch
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Compact Multibeam Array with Miniaturized Butler Matrix for 5G Applications
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作者 Suleiman A.Babale Muhammad K.Ishfaq +3 位作者 Ali Raza Jamal Nasir Ahmad Fayyaz Umer Ijaz 《Computers, Materials & Continua》 SCIE EI 2022年第7期925-937,共13页
This paper presents the design and implementation of a miniaturized beam steering network that produces broadside beams when it is fed with a compact antenna array.Butler Matrix(BM)was used as the beam steering networ... This paper presents the design and implementation of a miniaturized beam steering network that produces broadside beams when it is fed with a compact antenna array.Butler Matrix(BM)was used as the beam steering network.It was completely built from a miniaturized 3 dB hybrid-couplers in planar microstrip technology.It was configured by feeding the BM with a Planar Inverted-E Antenna(PIEA)array separated at 0.3λas against the 0.5λseparation.This makes the BM produce a major radiation pattern at the broadside.Apart from the miniaturization,no modification was made from the BM side.However,employing effective mutual coupling reduction techniques helped to design the compact PIEA array.The validity of this BM based multibeam PIEA array was demonstrated by comparing the simulation results of the reflection coefficients,transmissions coefficients and the radiation pattern with measurements.The measurement results showed good agreement with simulations. 展开更多
关键词 Beam steering COMPACT butler matrix grating lobe and mutual coupling PIEA array
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