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Design of a Carrier Wave for Capacitive Transducer with Large Dynamic Range

机译:大动态范围电容式传感器的载波设计

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摘要

Capacitive transducers are widely used in fundamental physics experiments, seismology, Earth or planetary observations, and space scientific and technical applications because of their high precision, simple structure, and compatibility with various measurements. However, in real applications, there is a trade-off between their resolution and dynamic range. Therefore, this paper is aimed at enlarging the dynamic range while ensuring high resolution. In this paper, a noise analysis of a capacitive transducer is presented, which shows that the amplitude noise of the carrier wave is the main limiting factor. Hence, a new method of generating a carrier wave with lower-amplitude noise is proposed in the paper. Based on the experimental verification, it is found that the carrier wave produced through the new method performed significantly better than the typical digital carrier wave when they were compared in the same sensing circuit. With the carrier wave produced through the new method, the dynamic range of the capacitive transducer can reach 120.7 dB, which is 18.3 dB greater than for the typical direct digital synthesis (DDS) method. In addition, the resolution of the carrier wave is mainly limited by the voltage reference components.
机译:电容式传感器由于其高精度,简单的结构以及与各种测量的兼容性而广泛用于基础物理实验,地震学,地球或行星观测以及空间科学和技术应用。但是,在实际应用中,它们的分辨率和动态范围之间需要权衡。因此,本文旨在在确保高分辨率的同时扩大动态范围。本文对电容式换能器进行了噪声分析,结果表明,载波的振幅噪声是主要的限制因素。因此,本文提出了一种产生低振幅噪声的载波的新方法。通过实验验证,发现在相同的传感电路中进行比较时,通过新方法产生的载波的性能明显优于典型的数字载波。通过新方法产生的载波,电容式换能器的动态范围可以达到120.7 dB,比典型的直接数字合成(DDS)方法大18.3 dB。另外,载波的分辨率主要受到参考电压分量的限制。

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