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Micromachined vibratory gyroscopes controlled by a high order band-pass sigma delta modulator.

机译:微机械振动陀螺仪由高阶带通Σ-Δ调制器控制。

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摘要

Abstract—This work reports on the design of novel closed-loop control systems for the sense mode of a vibratory-rate gyroscope based on a high-order sigma-delta modulator (SDM). A low-pass and two distinctive bandpass topologies are derived, and their advantages discussed. So far, most closed-loop force-feedback control systems for these sensors were based on low-pass SDM’s. Usually, the sensing element of a vibratory gyroscope is designed with a high quality factor to increase the sensitivity and, hence, can be treated as a mechanical resonator. Furthermore, the output characteristic of vibratory rate gyroscopes is narrowband amplitude- modulated signal. Therefore, a bandpass M is a more appropriate control strategy for a vibratory gyroscope than a low-pass SDM. Using a high-order bandpass SDM, the control system can adopt a much lower sampling frequency compared with a low-pass SDM while achieving a similar noise floor for a given oversampling ratio (OSR). In addition, a control system based on a high-order bandpass SDM is superior as it not only greatly shapes the quantization noise, but also alleviates tonal behavior, as is often seen in low-order SDM control systems, and has good immunities to fabrication tolerances and parameter mismatch. These properties are investigated in this study at system level.
机译:摘要—这项工作报告了基于高阶sigma-delta调制器(SDM)的用于振动速率陀螺仪传感模式的新型闭环控制系统的设计。推导了一种低通和两种独特的带通拓扑,并讨论了它们的优点。到目前为止,这些传感器的大多数闭环力反馈控制系统都是基于低通SDM的。通常,振动陀螺仪的感测元件被设计为具有高品质因数以增加灵敏度,因此可以被视为机械谐振器。此外,振动速率陀螺仪的​​输出特性是窄带幅度调制信号。因此,与低通SDM相比,带通M是振动陀螺仪更合适的控制策略。与低通SDM相比,使用高阶带通SDM,控制系统可以采用低得多的采样频率,同时对于给定的过采样率(OSR),可以获得类似的本底噪声。此外,基于高阶带通SDM的控制系统是优越的,因为它不仅可以极大地量化量化噪声,而且还可以缓解色调行为(如在低阶SDM控制系统中经常看到的那样),并且具有良好的制造抗扰性公差和参数不匹配。在本研究中,在系统级别研究了这些属性。

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