Cross-Entropy Method for Combinatorial Mixed-Parameter Optimization of Waveguide Polarizers for Ku-Band

Khushboo Singh, F. Ahmed, K. Esselle, D. Thalakotuna
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Abstract

In this work, a cross-entropy (CE) method-based combinatorial mixed parameter optimization approach is successfully implemented to design a wideband waveguide polarizer for Ku-band applications. Technically, the choice of permittivity and corresponding width of dielectrics required to load the walls of the waveguide polarizer to produce an optimum design remains a severe challenge. We classify this as an optimization problem and address it using the CE method. The dielectric loading on the walls of a square waveguide polarizer is optimized to achieve a broader bandwidth and an axial ratio (AR) below 0.2 dB. The CE algorithm coded in MATLAB in conjunction with the full-wave simulations in CST MWS is implemented to increase the AR bandwidth and reduce the overall length of the polarizer.
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ku波段波导偏振器组合混合参数优化的交叉熵法
本文成功地实现了一种基于交叉熵(CE)方法的组合混合参数优化方法,用于ku波段应用的宽带波导偏振器的设计。从技术上讲,选择介电常数和相应的介电宽度来加载波导偏振器的壁以产生最佳设计仍然是一个严峻的挑战。我们将其归类为优化问题,并使用CE方法来解决它。优化了方波波导偏振器壁上的介电载荷,使其具有更宽的带宽和0.2 dB以下的轴向比。利用MATLAB编写的CE算法,结合CST MWS的全波仿真,实现了增强现实带宽的增加和偏振片总长度的减小。
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