光学测量在微波电路和天线阵列设计中的应用综述

M. Weiss, J. Whitaker, Z. Popovic
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引用次数: 0

摘要

概述了光导采样和光电子测绘测量(由Whitaker和Katehi小组在密歇根大学开发)及其在加速微波电路和阵列设计方面的好处。特别地,我们将讨论开关模式非线性功率放大器和x波段的光导采样时域波形,以及c波段的高效乘法器。高阻抗光学采样探头可以测量微波电路中的波形。这反过来又使我们能够验证非传统非线性电路的设计,以及诊断与不当端接谐波相关的问题,从而导致新的改进电路设计。我们还介绍了使用电光晶体探头的近场测量。以30ghz (ka波段)有源放大器天线阵列功率合成器为例进行了详细的研究。分析了阵列元间互耦的影响,以及偏置线对阵列元间互耦的影响。还提供了包含更多概述材料细节的广泛参考文献列表。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Overview of applications of optical measurements in microwave circuit and antenna array design
An overview of both photoconductive sampling and optoelectronic mapping measurements (developed at the University of Michigan by the Whitaker and Katehi group) and their benefit in expediting microwave circuit and array design is presented. In particular, photoconductively sampled time-domain waveforms of switched-mode nonlinear power amplifiers and X-band and high-efficiency multipliers at C-band will be discussed. The high-impedance optical sampling probe enables measurements of waveforms within a microwave circuit. This in turn enables us to validate designs of nontraditional nonlinear circuits, as well as to diagnose problems associated with improperly terminated harmonics, leading to new improved circuit designs. We also present near-field measurements using an electro-optic crystal probe. As an example, a 30 GHz (Ka-band) active amplifier antenna array power combiner is examined in detail. The effects of mutual coupling between array elements, and bias line influence on RF mutual coupling between elements are presented. An extensive list of references that contain more details of the overviewed material is also given.
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