20212021 International Applied Computational Electromagnetics Society (ACES-China) SymposiumRequires access

Novel radome design for RF integration

Jinjing Ren, Yezhen Zheng, Shenhui Jing, Qi Tang

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Abstract

RF integration is widely needed by modern shipborne radars. A novel dual-band FSS radome with$\mathrm{S}+\mathrm{X}$passband is designed and simulated with angular stability. The passband are 1.55∼3.4GHz and 9.2∼9.7GHz. This radome achieves good performance in the finite large FSS simulation and cylindrical radome simulation.

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What this paper is about

RF integration is widely needed by modern shipborne radars. A novel dual-band FSS radome with$\mathrm{S}+\mathrm{X}$passband is designed and simulated with angular stability. The passband are 1.55∼3.4GHz and 9.2∼9.7GHz. This radome achieves good performance in the finite large FSS simulation and cylindrical radome simulation.

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Available abstract

RF integration is widely needed by modern shipborne radars. A novel dual-band FSS radome with$\mathrm{S}+\mathrm{X}$passband is designed and simulated with angular stability. The passband are 1.55∼3.4GHz and 9.2∼9.7GHz. This radome achieves good performance in the finite large FSS simulation and cylindrical radome simulation.

Key concepts: Radome, Passband, Computer science, Stability (learning theory), Band-pass filter, Physics, Electronic engineering, Acoustics

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