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A Fractal-Based Time-Modulated Multiband Linear Array for Interband Communication
DOI:10.1109/LAWP.2022.3151705.png)
摘要
En 中文
A novel method of utilizing the repetitive self-similar propertyof the cantor set fractal (CSF) pattern in synthesizing a time-modulated linear array (TMLA) with multiband characteristics, applicable for interband communication, is proposed. The fractal pattern of different growth stages is used to constitute subarrays (SAs) and each group of the subarrayed elements is periodically modulated via a single radio frequency (RF) switch. A closed-form array factor (AF) expression of the proposed CSF-TMLA is derived, and through representative results, it is shown that a Pth stage CSF-TMLA is eligible to be functional at P intercommunication bands with power patterns of the same sidelobe level. It is further investigated that the number of RF switches and, hence, the unknown optimization variables essentially entailed to synthesize the array are drastically reduced.
Keyword:
Fractals
Switches
Harmonic analysis
Antenna arrays
Apertures
Radio frequency
Optimization
Cantor set fractal (CSF)
differential evolution (DE)
sidelobe level (SLL)
time-modulated array (TMA)
期刊
IF:
4.8
论文数:
1.0W
被引数:
2.8W
机构
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