Cassegrain Antenna With Hybrid Beam Steering Scheme for Mobile Satellite Communications
Кассегреновская антенна с гибридной схемой управления диаграммой направленности для мобильной спутниковой связи
2009-05-01
SCID: 54.1/c5e4g6uq
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Cassegrain antennaKa-bandhybrid beam steeringmobile satellite communicationsphased array feed
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Abstract (AI)
A hybrid antenna (HA) with a modified beam steering method is proposed. This antenna has a Cassegrain structure composed of two reflectors and a feeder. The parabolic-shaped main reflector is designed for high gain, while the subreflector is rotational and flat. The feeder is a phased array with arbitrary shaped aperture and 20 element antennas. The HA is capable of two-dimensional beam steering by means of two operations: rotation of the subreflector and phase control of the feed array. The subreflector is small in size and weight, so it can provide rapid beam scanning. Designed to be loaded in vehicles, the HA and can communicate with satellites on the move by tracking the beam control of the feed array. A prototype of the HA is fabricated with aluminum using a machining center operated by computerized numerical control. The prototype is operated at Ka-band for TX and K-band for RX with gains of 47 dBi and 44.4 dBi, respectively, at a steering angle of 0deg. The two-dimensional beam steering within plusmn2degwith respect to 45degelevation is realized by the subreflector and feed array. All radiation patterns in the beam steering zone meet ITU-R s.465-5 regulations.
Key Findings
1
A fabricated prototype achieves 47 dBi transmit gain at Ka-band and 44.4 dBi receive gain at K-band at zero steering angle.
2
A hybrid Cassegrain antenna enables two-dimensional beam steering through rotational subreflector movement combined with phase control of a 20-element phased-array feed.
3
All radiation patterns within the steering region satisfy ITU-R S.465-5 regulations.
4
The antenna uses a high-gain parabolic main reflector and a lightweight, rapidly rotatable flat subreflector, supporting satellite communications from moving vehicles.
5
The prototype realizes two-dimensional beam steering within ±2° around 45° elevation using coordinated subreflector rotation and feed-array control.
Research Object
Cassegrain hybrid antenna for mobile satellite communications
Research Subject
Two-dimensional beam steering performance using rotational-subreflector and phased-array feed control, including gain and radiation-pattern compliance
Publication Details
Publication Date
2009-05-01
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