2013Unpublished venueRequires access

Fast Optimal Design and Simulation of the Waveguide Slotted Array

Chunxiao Jian, Peiguo Liu, Chong Wang, Dongming Zhou

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Abstract

The self-admittance of a rectangular waveguide longitudinal slot is determined using the Y parameter simulation results of commercial software HFSS and the active admittance is determined using Elliott equations in that the internal and external mutual couplings are taken into account . “Approaching ideal active admittance” cost function is present and the radiating slot dimensions are optimized in genetic algorithm. In this paper, the above method has been used to design a Ku-waveband slot linear array of 3 × 24 elements. The simulating result of 3 dB side lobe level drop show that the method is feasible. (3 pages)

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What this paper is about

The self-admittance of a rectangular waveguide longitudinal slot is determined using the Y parameter simulation results of commercial software HFSS and the active admittance is determined using Elliott equations in that the internal and external mutual couplings are taken into account . “Approaching ideal active admittance” cost function is present and the radiating slot dimensions are optimized in genetic algorithm. In this paper, the above method has been used to design a Ku-waveband slot linear array of 3 × 24 elements. The simulating result of 3 dB side lobe level drop show that the method is feasible. (3 pages)

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Available abstract

The self-admittance of a rectangular waveguide longitudinal slot is determined using the Y parameter simulation results of commercial software HFSS and the active admittance is determined using Elliott equations in that the internal and external mutual couplings are taken into account . “Approaching ideal active admittance” cost function is present and the radiating slot dimensions are optimized in genetic algorithm. In this paper, the above method has been used to design a Ku-waveband slot linear array of 3 × 24 elements. The simulating result of 3 dB side lobe level drop show that the method is feasible. (3 pages)

Key concepts: HFSS, Admittance, Slotted waveguide, Waveguide, Side lobe, Computer science, Genetic algorithm, Ideal (ethics)

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