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Noise Analysis of Phase-Demodulating Receivers Employing Super-Regenerative Amplification

机译:采用超再生放大的相位解调接收机的噪声分析

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摘要

Growing interest in ultralow-power radio frequency receivers has reinvigorated research in super-regenerative amplifier (SRA) architectures, in part due to their ability to achieve enormous gain at very low power. Conventionally, SRAs have been paired with envelop detectors that demodulate amplitude-modulated signals (e.g., ON-OFF keying); mathematical models have been developed to predict the performance of such systems. Since modern communication applications require more spectrally efficiency modulation schemes, this paper develops a mathematical model that predicts the stochastic behavior of SRAs when used in phase-demodulating receivers. This stochastic model is then used to predict the sensitivity of a phase-demodulating receiver employing a Colpitts-based SRA. Results from the developed model are validated with measurements of a discrete prototype, illustrating that SRAs can be used with I/Q mixing to demodulate quadrature phase-shift keying signals with -88-dBm sensitivity when the SRA consumes 1.2 mA at 1.5 V at 45 MHz.
机译:对超低功率射频接收器的日益增长的兴趣使超再生放大器(SRA)架构的研究得到了振兴,部分原因是它们具有以非常低的功率实现巨大增益的能力。常规上,SRA已与包络检波器配对,该包络检波器对调幅信号进行解调(例如,开关键);已经开发出数学模型来预测这种系统的性能。由于现代通信应用需要更多的频谱效率调制方案,因此本文开发了一种数学模型,该模型可以预测SRA在相位解调接收机中的随机行为。然后,使用该随机模型来预测采用基于Colpitts的SRA的相位解调接收器的灵敏度。所开发模型的结果通过离散原型的测量得到验证,这说明当SRA在1.5 V在45 V下消耗1.2 mA电流时,SRA可以与I / Q混合一起使用,以-88 dBm灵敏度解调正交相移键控信号。兆赫

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