The increase in small, distributed facilities expected in the near future has raised the necessity of having low-cost, transportable radar systems. In turn, this requires the design of high-gain, low-cost, planar, robust, and easy-to-assemble antennas. In this scenario, the possibility of using a laser-cutting technology in manufacturing a linearly polarized radialline slot array (RLSA) has been investigated. An ad hoc optimization algorithm, which takes into account the physical mechanism beyond the radial-line slot array antenna, has been developed to obtain low antenna sidelobe levels, as required by the specific BASYLIS radar application. The optimization technique allows using near-resonance radiating slots and canceling slots that are all closely spaced on the upper plate of the radial-line slot array. The measurements carried out on the antenna prototype showed very good performance, despite the use of low-cost materials and manufacturing technology.

Mazzinghi, A., Albani, M., Freni, A. (2013). LP-RLSA design for low-cost transportable basylis radar [Antenna applications corner]. IEEE ANTENNAS & PROPAGATION MAGAZINE, 55(5), 275-285 [10.1109/MAP.2013.6735535].

LP-RLSA design for low-cost transportable basylis radar [Antenna applications corner]

Mazzinghi, Agnese;Albani, Matteo;
2013-01-01

Abstract

The increase in small, distributed facilities expected in the near future has raised the necessity of having low-cost, transportable radar systems. In turn, this requires the design of high-gain, low-cost, planar, robust, and easy-to-assemble antennas. In this scenario, the possibility of using a laser-cutting technology in manufacturing a linearly polarized radialline slot array (RLSA) has been investigated. An ad hoc optimization algorithm, which takes into account the physical mechanism beyond the radial-line slot array antenna, has been developed to obtain low antenna sidelobe levels, as required by the specific BASYLIS radar application. The optimization technique allows using near-resonance radiating slots and canceling slots that are all closely spaced on the upper plate of the radial-line slot array. The measurements carried out on the antenna prototype showed very good performance, despite the use of low-cost materials and manufacturing technology.
2013
Mazzinghi, A., Albani, M., Freni, A. (2013). LP-RLSA design for low-cost transportable basylis radar [Antenna applications corner]. IEEE ANTENNAS & PROPAGATION MAGAZINE, 55(5), 275-285 [10.1109/MAP.2013.6735535].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11365/983276
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