宽带对数周期天线的测量、仿真与优化

K. Mistry, P. Lazaridis, I. Glover, V. Holmes, F. Khan, Q. Ahmed, Z. Zaharis, T. Xenos
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引用次数: 4

摘要

对数周期天线是一种特殊的天线类型,由于它能够在很宽的频率范围内实现几乎恒定的增益,在许多宽带应用中取得了巨大的成功。这种天线广泛用于电磁兼容性测量、频谱监测和电视接收。在本研究中,对470 - 860mhz频段的对数周期偶极子阵列进行了测量、模拟和优化。首先分别在时域和频域对天线进行了仿真。为了保证天线的准确建模,对这些仿真进行了比较。实际测量的净增益与模拟的净增益吻合较好。然后对天线进行优化,同时提高电压驻波比、净增益和前后比。优化过程使用了CST Microwave Studio中包含的各种算法,如可信区域框架、Nelder Mead单纯形算法、经典鲍威尔算法和协方差矩阵自适应进化策略(CMA-ES)。可信区域框架似乎在充分优化天线的所有预定义目标方面具有最佳性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Measurement, simulation and optimization of wideband log-periodic antennas
Log-periodic antenna is a special antenna type utilized with great success in many broadband applications due to its ability to achieve nearly constant gain over a wide frequency range. Such antennas are extensively used in electromagnetic compatibility measurements, spectrum monitoring and TV reception. In this study, a log-periodic dipole array is measured, simulated, and then optimized in the 470–860 MHz frequency band. Two simulations of the antenna are initially performed in time and frequency domain respectively. The comparison between these simulations is presented to ensure accurate modelling of the antenna. The practically measured net gain is in good agreement with the simulated net gain. The antenna is then optimized to concurrently improve voltage standing wave ration, net gain and front-to-back ratio. The optimization process has been implemented by using various algorithms included in CST Microwave Studio, such as Trusted Region Framework, Nelder Mead Simplex algorithm, Classic Powell and Covariance Matrix Adaptation Evolutionary Strategy (CMA-ES). The Trusted Region Framework seems to have the best performance in sufficiently optimizing all predefined goals specified for the antenna.
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