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Method to Determine the Closed-Loop Precision of Resonant Sensors From Open-Loop Measurements

机译:从开环测量确定谐振传感器的闭环精度的方法

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摘要

Resonant sensors determine a sensed parameter by measuring the resonance frequency of a resonator. For fast continuous sensing, it is desirable to operate resonant sensors in a closed-loop configuration, where a feedback loop ensures that the resonator is always actuated near its resonance frequency, so that the precision is maximized even in the presence of drifts or fluctuations of the resonance frequency. However, in a closed-loop configuration, the precision is not only determined by the resonator itself, but also by the feedback loop, even if the feedback circuit is noiseless. Therefore, to characterize the intrinsic precision of resonant sensors, the open-loop configuration is often employed. To link these measurements to the actual closed-loop performance of the resonator, it is desirable to have a relation that determines the closed-loop precision of the resonator from open-loop characterisation data. In this work, we present a methodology to estimate the closed-loop resonant sensor precision by relying only on an open-loop characterization of the resonator. The procedure is beneficial for fast performance estimation and benchmarking of resonant sensors, because it does not require actual closed-loop sensor operation, thus being independent on the particular implementation of the feedback loop. We validate the methodology experimentally by determining the closed-loop precision of a mechanical resonator from an open-loop measurement and comparing this to an actual closed-loop measurement.
机译:通过测量谐振器的谐振频率来确定谐振传感器通过测量谐振频率来确定感测的参数。为了快速连续感测,期望在闭环配置中操作谐振传感器,其中反馈回路确保谐振器始终在其谐振频率附近致动,因此即使在存在漂移或波动的情况下也能够最大化精度。共振频率。然而,在闭环配置中,即使反馈电路无噪声,也不仅由谐振器本身确定的精度,而且由反馈回路确定。因此,为了表征谐振传感器的内在精度,通常采用开环配置。为了将这些测量值链接到谐振器的实际闭环性能,希望具有确定谐振器的闭环精度与开环表征数据的关系。在这项工作中,我们通过仅依赖于谐振器的开环表征来提出一种方法来估计闭环谐振传感器精度。该过程有利于快速性能估计和谐振传感器的基准测试,因为它不需要实际闭环传感器操作,因此独立于反馈回路的特定实现。我们通过从开环测量确定机械谐振器的闭环精度并将其与实际闭环测量进行比较来实验通过实验验证方法。

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