2021
DOI: 10.1109/access.2021.3075060
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Evaluation of a Planar Reconfigurable Phased Array Antenna Driven by a Multi-Channel Beamforming Module at Ka Band

Abstract: In this paper, a planar active phased array antenna demonstration with linear polarization (LP) at Ka Band (28-30 GHz) is presented. The proof of concept is carried out to evaluate the possible problems that may arise, to analyze possible calibration stages and to assess the viability of the integration of an active system with a Multi-Channel Beamforming Module (MCBM). To fulfill this task an 8x8-element planar array arranged in column subarrays of 1x8 elements for 1D beam steering is proposed. The single ele… Show more

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Cited by 11 publications
(5 citation statements)
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“…By using the same approach as ( 55), (75) can be redefined as By substituting (76) and ( 74) into (47), the OP DF can be obtained as in (48). Thus, the proof is finished.…”
Section: Appendix C: Proof Of Theoremmentioning
confidence: 98%
See 1 more Smart Citation
“…By using the same approach as ( 55), (75) can be redefined as By substituting (76) and ( 74) into (47), the OP DF can be obtained as in (48). Thus, the proof is finished.…”
Section: Appendix C: Proof Of Theoremmentioning
confidence: 98%
“…It is recommended to use highly directional antennas for antenna configuration to reduce interference. For example, horn, slotted waveguide array, and microstrip patch array antennas are deployed for cellular links, and dish antennas are for satellite links [47], [48]. In practice, it is difficult to obtain perfect CSI due to some channel estimation errors (CEEs).…”
Section: A Channel Modelmentioning
confidence: 99%
“…In various applications, such as advanced military and commercial technology, the array antenna is often used owing to its high scanning speed and precision [1][2][3][4]. Several wideangle beam scanning links to phased arrays have been implemented for radar applications, and various kinds of reconfigurable antenna elements for the array have been proposed to improve scanning range and performance [5][6][7][8][9].…”
Section: Introductionmentioning
confidence: 99%
“…Therefore, current research is focusing on developing compact/deployable beam-scanning HGAs for space applications [4]- [6]. The proposed solutions are generally based on traditional HGA technologies, such as, parabolic reflector antennas [7]- [9], phased array antennas [10]- [13], and reflectarray antennas (RAs) [14]- [18]. Compared to the parabolic reflector and phased array antennas, RAs provide highly directive and versatile beams while maintaining low mass, low fabrication cost, and low complexity [19], [20].…”
Section: Introductionmentioning
confidence: 99%