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Unified Integration of Self-Oscillating Mixer-Antenna for Compact Receiver Frontend

机译:紧凑型接收器前端自振荡混频器 - 天线的统一集成

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A method of integration for unifying active device and receiving antenna to realize a low-loss and compact single-ended self-oscillating mixer-antenna (SOMA) frontend is proposed in this work, through an experimental prototype demonstrated over X-band. Stability analysis of the active device is performed first, and a shorted microstrip line is then used as a source feedback to destabilize it. Subsequently, rectangular patch antenna impedance behavior is studied, and eventually designed to satisfy the oscillation requirement at LO frequency of 10.8 GHz, and also to exhibit stability and good radiation performance at RF frequency of 10 GHz. Dual band microstrip matching network is designed for simultaneously satisfying the oscillation condition at LO and the impedance matching at IF for measurements. It is observed experimentally that the oscillation occurs at LO frequency of 10.86 GHz. Subsequently, a 10 GHz RF input signal is fed, which results in a self-oscillating mixer configuration with an IF signal of 0.86 GHz at the output. From measurements, the proposed SOMA exhibits a conversion gain of 10 dB, and input power 1-dB compression point of -10 dBm.
机译:在该工作中提出了一种用于统一有源器件和接收天线以实现低损耗和紧凑的单端自振荡混频器 - 天线(SOMA)前端的方法,通过在X波段上证明的实验原型。首先执行有源器件的稳定性分析,然后使用短路微带线作为源反馈以使其稳定。随后,研究了矩形贴片天线阻抗行为,最终设计用于满足10.8GHz的LO频率的振荡要求,并且还在10GHz的RF频率下表现出稳定性和良好的辐射性能。双频带微带匹配网络被设计用于同时满足LO的振荡条件和IF用于测量的阻抗匹配。实验观察到振荡发生在10.86GHz的LO频率下。随后,馈送10GHz RF输入信号,这导致自振荡混频器配置,其IF信号在输出处为0.86GHz。从测量开始,所提出的SOMA表现出10dB的转换增益,以及输入功率1-DB压缩点-10 dBm。

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