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Nonlinear enhancement of locking range of mutually injection-locked oscillators for resonant sensing applications

机译:非线性注入互锁振荡器在谐振感应应用中的锁定范围的非线性增强

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摘要

Sensor architectures based on coupled resonators are receiving increased interest from the resonant sensing community. Certain output metrics of such sensors have an increased sensitivity to the measurand, compared to conventional resonant sensors with frequency-modulated outputs. In the present paper, we investigate the properties of a differential architecture based on mutually injection-locked oscillators beyond the linear theoretical framework, by driving the resonators higher than the critical Duffing amplitude. Our results show that a trade-off must be made between sensitivity and measurement (locking) range. Experimental results obtained with our MILO architecture and the amplitude ratio output metric are also reported for the first time.
机译:基于耦合谐振器的传感器架构越来越受到谐振传感领域的关注。与具有频率调制输出的常规谐振传感器相比,此类传感器的某些输出度量对被测物具有更高的灵敏度。在本文中,我们通过驱动谐振器高于临界Duffing幅度,研究了基于互注入互锁振荡器的差分架构的特性,该特性超出了线性理论框架。我们的结果表明,必须在灵敏度和测量(锁定)范围之间进行权衡。我们的MILO架构和振幅比输出指标获得的实验结果也首次被报道。

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