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Performance evaluation of an injection-locked self-oscillating mixer as a down-converter and phase shifter element for communication system applications

机译:用于通信系统应用的井喷式自振动混合器的测定自振荡混合器的性能评估

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Self-oscillating mixers (SOM) are used in phased arrays and other communication systems due to their potential application as both down-converters that do not require an external local oscillator (LO) signal, and phase shifters. Phase shifting properties are introduced to the SOM by injection locking it to an external reference. In this work, the effects of the injection signal power on the performance of an SOM element are investigated. In addition the performance variation along the stable phase shift range is examined. Conversion gain, noise figure and distortion are evaluated. Simulation results are presented using harmonic balance and conversion matrix analyses to trace the various solutions. In addition, the stability of the solutions is verified with envelope transient analysis. The simulation results are compared with measurements on a 3.5 GHz SOM, designed to down-covert an RF signal of 7.1–7.25 GHz to an IF frequency in the range of 100–250 MHz, by mixing it with the 2nd harmonic of the SOM.
机译:由于它们的潜在应用而在不需要外部本地振荡器(LO)信号和移相器的下变频器的潜在应用,自振荡混合器(SOM)用于分阶段阵列和其他通信系统。通过喷射将其锁定到外部参考,将相移特性引入SOM。在这项工作中,研究了注射信号功率对SOM元件性能的影响。另外,检查沿稳定相移距离的性能变化。评估转换增益,噪声系数和失真。使用谐波平衡和转换矩阵分析来呈现仿真结果以跟踪各种解决方案。此外,通过包络瞬态分析验证了解决方案的稳定性。将模拟结果与3.5 GHz SOM的测量进行了比较,该测量设计为7.1-7.25GHz的RF信号,通过将其与2 ND som的谐波。

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