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Investigation on Stray-Capacitance Influences of Coaxial Cables in Capacitive Transducers for a Space Inertial Sensor

机译:空间惯性传感器电容传感器中同轴电缆的杂散电容影响研究

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摘要

Ultra-sensitive inertial sensors are one of the key components in satellite Earth’s gravity field recovery missions and space gravitational wave detection missions. Low-noise capacitive position transducers are crucial to these missions to achieve the scientific goal. However, in actual engineering applications, the sensor head and electronics unit usually place separately in the satellite platform where a connecting cable is needed. In this paper, we focus on the stray-capacitance influences of coaxial cables which are used to connect the mechanical core and the electronics. Specially, for the capacitive transducer with a differential transformer bridge structure usually used in high-precision space inertial sensors, a connecting method of a coaxial cable between the transformer’s secondary winding and front-end circuit’s preamplifier is proposed to transmit the AC modulated analog voltage signal. The measurement and noise models including the stray-capacitance of the coaxial cable under this configuration is analyzed. A prototype system is set up to investigate the influences of the cables experimentally. Three different types and lengths of coaxial cables are chosen in our experiments to compare their performances. The analysis shows that the stray-capacitance will alter the circuit’s resonant frequency which could be adjusted by additional tuning capacitance, then under the optimal resonant condition, the output voltage noises of the preamplifier are measured and the sensitivity coefficients are also calibrated. Meanwhile, the stray-capacitance of the cables is estimated. Finally, the experimental results show that the noise level of this circuit with the selected cables could all achieve 1–2 × 10 pF/Hz at 0.1 Hz.
机译:超灵敏惯性传感器是卫星地球重力场恢复任务和太空引力波检测任务的关键组件之一。低噪声电容式位置传感器对于实现科学目标的这些任务至关重要。但是,在实际工程应用中,传感器头和电子单元通常分别放置在需要连接电缆的卫星平台中。在本文中,我们将重点放在同轴电缆的杂散电容影响上,这些同轴电缆用于连接机械芯和电子设备。特别地,对于高精度空间惯性传感器中通常使用的具有差分变压器电桥结构的电容式传感器,提出了变压器次级绕组与前端电路前置放大器之间同轴电缆的连接方法,以传输交流调制模拟电压信号。 。分析了在此配置下的测量和噪声模型,包括同轴电缆的杂散电容。建立了一个原型系统,以实验方式研究电缆的影响。我们在实验中选择了三种不同类型和长度的同轴电缆来比较其性能。分析表明,杂散电容会改变电路的谐振频率,可以通过增加调谐电容来调整谐振频率,然后在最佳谐振条件下,测量前置放大器的输出电压噪声,并对灵敏度系数进行校准。同时,估计电缆的杂散电容。最后,实验结果表明,在选择了电缆的情况下,该电路的噪声水平在0.1 Hz时都可以达到1-2×10 pF / Hz。

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