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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Phase Noise and Fundamental Sensitivity of Oscillator-Based Reactance Sensors
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Phase Noise and Fundamental Sensitivity of Oscillator-Based Reactance Sensors

机译:基于振荡器的电抗传感器的相位噪声和基本灵敏度

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摘要

This paper investigates the fundamental sensitivity of oscillator-based reactance sensors, which are widely used in numerous types of biomedical sensing applications. We first show that the intrinsic sensitivity is limited by the $1/{ f}^{3}$ phase noise of the sensing oscillators. To achieve sensor detection sensitivity below this limit, a correlated double counting (CDC) noise suppression scheme is proposed to cancel the correlated $1/{ f}^{3}$ phase noise in differential frequency detections. The suppression effect of the CDC scheme is thoroughly modeled. Moreover, the CDC scheme is extended to a high-order configuration, called the Interleaving-N CDC, to further improve the frequency resolution. In addition, we show that the weighting sequence on the Interleaving-N CDC data can be optimized as a digital noise filter to maximize the noise suppression. Given a sensing oscillator with any phase-noise profile, a general weighting optimization method is proposed based on the minimum variance distortion less response. As an example, an oscillator-based inductive magnetic sensor array in a 45-nm CMOS silicon-on-insulator process is implemented with the proposed CDC scheme. It achieves a noise suppression of 10.4 dB with basic CDC sheme and a frequency resolution of 0.128 parts per million for Interleaving-N CDC scheme, both with negligible power overhead. This enables inductance-change detection sensitivity of 0.41 fH for a low- $Q$ on-chip 1.6-nH inductor with a quality factor of only 4.95.
机译:<?Pub Dtl?>本文研究了基于振荡器的电抗传感器的基本灵敏度,该传感器已广泛用于多种类型的生物医学传感应用中。我们首先表明,本征灵敏度受感测的相位噪声的限制,即 $ 1 / {f} ^ {3} $ 振荡器。为了实现低于此限制的传感器检测灵敏度,提出了一种相关的双计数(CDC)噪声抑制方案,以取消相关的 $ 1 / {f} ^ {3}差分频率检测中的$ 相位噪声。完全模拟了CDC方案的抑制效果。而且,CDC方案被扩展到称为交错N CDC的高阶配置,以进一步提高频率分辨率。另外,我们表明,可以将交错N CDC数据上的加权序列优化为数字噪声滤波器,以最大程度地抑制噪声。在给定具有任何相位噪声分布的感测振荡器的情况下,提出了一种基于最小方差失真减响应的通用加权优化方法。例如,采用建议的CDC方案实现了45纳米CMOS绝缘体上硅工艺中基于振荡器的感应磁传感器阵列。对于Interleaving-N CDC方案,它具有基本CDC Sheme的10.4 dB噪声抑制和百万分之0.128的频率分辨率,两者的功率开销都可以忽略不计。这样,对于具有-C的片上1.6 nH电感的低 $ Q $ 低电感,电感变化检测灵敏度为0.41 fH。品质因数仅为4.95。

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