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FDTD analysis of dielectric-embedded electronically switched multiple-beam (DE-ESMB) antenna array

机译:嵌入电介质的电子开关多波束(DE-ESMB)天线阵列的FDTD分析

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摘要

The design procedure, finite-difference time-domain (FDTD) modeling, and experimental measurements for a novel dielectric-embedded electronically switched multiple-beam (DE-ESMB) antenna array are presented in this paper. Size reduction of a parasitic switched monopole antenna was accomplished by embedding the array in a cylindrical rod of L6G nylon with a relative permittivity εr=4.4. Dielectric-embedded and free-space prototypes of a nine-element ESMB antenna array were modeled and experimentally characterized. Experimental measurements and numerical results are in good agreement. The measured return loss for the nine-element embedded antenna was less than -25 dB at 2.32 GHz. An overall volume reduction of 80% and footprint reduction of 50% was achieved. Adaptive simulated annealing with FDTD was used to optimize the 17-element DE-ESMB array, achieving a return loss of less than -10 dB across the 2.4 GHz to 2.5 GHz ISM band
机译:本文介绍了新型电介质嵌入电子开关多波束(DE-ESMB)天线阵列的设计程序,有限差分时域(FDTD)建模和实验测量。通过将阵列嵌入相对介电常数εr= 4.4的L6G尼龙圆柱棒中来实现寄生开关单极天线的尺寸减小。对9元素ESMB天线阵列的电介质嵌入和自由空间原型进行了建模和实验表征。实验测量和数值结果吻合良好。在2.32 GHz时,九元素嵌入式天线的测量回波损耗小于-25 dB。总体体积减少了80%,占地面积减少了50%。使用带有FDTD的自适应模拟退火优化了17个元素的DE-ESMB阵列,在2.4 GHz至2.5 GHz ISM频带上实现了小于-10 dB的回波损耗

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