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Modeling and Analysis of the Noise Performance of the Capacitive Sensing Circuit with a Differential Transformer

机译:差动变压器电容传感电路的噪声性能建模与分析

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Capacitive sensing is a key technique to measure the test mass movement with a high resolution for space-borne gravitational wave detectors, such as Laser Interferometer Space Antenna (LISA) and TianQin. The capacitance resolution requirement of TianQin is higher than that of LISA, as the arm length of TianQin is about 15 times shorter. In this paper, the transfer function and capacitance measurement noise of the circuit are modeled and analyzed. Figure-of-merits, including the product of the inductance L and the quality factor Q of the transformer, are proposed to optimize the transformer and the capacitance measurement resolution of the circuit. The LQ product improvement and the resonant frequency augmentation are the key factors to enhance the capacitance measurement resolution. We fabricated a transformer with a high LQ product over a wide frequency band. The evaluation showed that the transformer can generate a capacitance resolution of 0.11 aF/Hz 1/2 at a resonant frequency of 200 kHz, and the amplitude of the injection wave would be 0.6 V. This result supports the potential application of the proposed transformer in space-borne gravitational wave detection and demonstrates that it could relieve the stringent requirements for other parameters in the TianQin mission.
机译:电容式感测是一种用于测量引力波探测器(如激光干涉仪空间天线(LISA)和天琴)的高分辨率的测试质量运动的关键技术。由于天琴的臂长缩短了约15倍,因此天琴的电容分辨率要求高于LISA。本文对电路的传递函数和电容测量噪声进行了建模和分析。提出了品质因数,包括电感L和变压器的品质因数Q的乘积,以优化变压器和电路的电容测量分辨率。 LQ产品的改进和谐振频率的增加是提高电容测量分辨率的关键因素。我们制造了一个在宽频带上具有高LQ产品的变压器。评估表明,在200 kHz的谐振频率下,该变压器可以产生0.11 aF / Hz 1/2的电容分辨率,并且注入波的振幅为0.6V。这一结果支持了所提出的变压器在电势上的潜在应用。星载引力波检测,并证明它可以减轻对天琴飞行任务中其他参数的严格要求。

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