利用多音信号进行多因子抑制

M. Mirmozafari, N. Behdad, J. Booske
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引用次数: 1

摘要

我们提出了多种多音射频(RF)激励来部分或完全抑制微带线结构的多因子敏感区。我们研究了双音和双音以上的射频激励。多音信号的组成成分在幅度、频率和相位上各不相同,从而产生了大量的多音激励。我们的初步研究表明,在双音射频激励下,多因子区会部分收缩,我们假设双音或双音以上射频信号的相对幅度、相位和频率的某些安排会导致多因子的完全抑制。我们使用我们开发的敏捷半解析方法[1]研究了特定射频激励下的多因子敏感性图。该模型最初是为单音正弦射频信号开发的,我们将其扩展到包括多音信号。我们将使用我们的宽带、大功率多因子实验装置[2]来验证我们的预测。该装置具有多个局部多因子传感器和一个全局传感器,可在不同阶段、不同多因子测试条件下重复、可靠地检测多因子。这项研究的结果可以帮助确定不需要几何修改的多音多因子抑制技术,同时支持卫星通信中的高速数据传输。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multipactor Suppression using Multitone Signals
We present various multitone radio frequency (RF) excitations to partially or fully suppress the multipactor susceptible zone of a microstripline structure. We study two-tone and more than two-tone RF excitations. The constituting components of the multitone signal differ in amplitude, frequency, and phase, creating a large set of multitone excitations. Our initial investigations show partial shrinkage of the multipactor zone with two-tone RF excitation and we hypothesize that there are certain arrangements of relative amplitude, phase, and frequencies either with two-tone or more than two-tone RF signals that result in full suppression of multipactor. We investigate the multipactor susceptibility charts subject to a certain RF excitation using our developed agile semi-analytic approach [1] . This model was originally developed for a single-tone sinusoidal RF signal and we extended it to include multitone signals as well. We will validate our predictions using our broadband, high-power multipactor experimental apparatus [2] . This setup features several local multipactor sensors and a global sensor to repeatedly and reliably detect multipactor in different stages with different multipactor test conditions. The outcome of this research can help identify multitone multipactor suppression techniques that do not need geometrical modifications while supporting high-rate data transfer in satellite communications.
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