一种工作在非线性区域的高分辨率振动梁加速度计,用于地震地面传感器

R. Lévy, G. Papin, O. Le Traon, D. Janiaud, J. Guerard
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引用次数: 4

摘要

振动梁加速度计(VBA)由一个振动的微梁固定在一侧,并连接到另一侧的证明质量。梁通过振荡电路保持在共振状态,当证明质量被加速时,压缩或拉伸应力施加在振动梁上,改变其共振频率。加速度计的输出是频率测量,其分辨率由相位噪声在传感器带宽上的积分决定,其偏置稳定性由接近载波的相位噪声或频率稳定性决定。如果以足够高的力幅驱动光束谐振器,使其在非线性区域工作,则远载波相位噪声降低,提高传感器分辨率,而近载波相位噪声增加,使分辨率和偏置稳定性恶化。对于惯性应用,加速度测量是两次积分来计算位置,因此偏差稳定性是至关重要的。当波束谐振器工作在非线性区域时,偏置稳定性会变差,这就是惯性应用中vba工作在线性区域的原因。在地震地面传感器的应用中,不考虑偏置稳定性,重要的参数是由地震波频率决定的带宽分辨率。在这种情况下,最好在非线性区域操作光束谐振器,以提高传感器的分辨率。在前人的工作中,提出了考虑非线性项的振动梁加速度计的行为模型,包括梁谐振器和振荡电路。通过对瞬态和相位噪声的仿真,表明在非线性区域增加振动幅值可以改善远载波相位噪声,降低近载波相位噪声。然后将这些模拟结果与ONERA开发的VIA振动梁加速度计的实验测量结果进行比较。最后通过相位噪声仿真计算加速度计噪声,优化加速度计分辨率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A high resolution vibrating beam accelerometer working in nonlinear region for seismic ground sensor application
The Vibrating Beam Accelerometer (VBA) consists in a vibrating micro beam anchored on one side and linked to a proof mass on the other side. The beam is maintained at resonance by means of an oscillator circuit, and when the proof mass is submitted to acceleration, compressive or tensile stresses are applied on the vibrating beam modifying its resonance frequency. The output of the accelerometer is a frequency measurement, its resolution is determined by the phase noise integrated over the sensor bandwidth, and its bias stability is determined by the close to carrier phase noise or frequency stability. If the beam resonator is actuated with increased force amplitude high enough to operate in the nonlinear region, far from carrier phase noise is decreased improving the sensor resolution while the close to carrier phase noise is increased deteriorating the resolution and bias stability. For inertial applications, the acceleration measurement is twice integrated to calculate the position, and as a consequence the bias stability is crucial. The bias stability is deteriorated when the beam resonator operates in the nonlinear region, this is the reason why VBAs work in the linear region for inertial applications. Concerning seismic ground sensor applications the bias stability is not considered and the important parameter is the resolution at the bandwidth determined by the frequency of the seismic waves. In this case it is then better to operate the beam resonator in the nonlinear region to improve the sensor resolution. Previous work have presented a behavioral model of the vibrating beam accelerometer including the beam resonator and the oscillator circuit taking into account the nonlinear terms. The transient and phase noise simulations are presented to show the improvement of the far from carrier phase noise and the degradation of the close to carrier phase noise while increasing the vibration amplitude in nonlinear region. These simulations are then compared to experimental measurements of the VIA vibrating beam accelerometer developed at ONERA. Finally these accelerometer noise is calculated from the phase noise simulations and the accelerometer resolution is optimized.
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