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Switchless charge-discharge circuit for electrical capacitance tomography

机译:电容层析成像的无开关充放电电路

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摘要

The main factor limiting the performance of electrical capacitance tomography (ECT) is an extremely low value of inter-electrode capacitances. The charge-discharge circuit is a well suited circuit for a small capacitance measurement due to its immunity to noise and stray capacitance, although it has a problem associated with a charge injected by the analogue switches, which results in a dc offset. This paper presents a new diode-based circuit for capacitance measurement in which a charge transfer method is realized without switches. The circuit was built and tested in one channel configuration with 16 multiplexed electrodes. The performance of the elaborated circuit and a comparison with a classic charge-discharge circuit are presented. The elaborated circuit can be used for sensors with inter-electrode capacitances not lower than 10fF. The presented approach allows us to obtain a similar performance to the classic charge-discharge circuit, but has a simplified design. A lack of the need to synchronize the analogue switches in the transmitter and the receiver part of this circuit could be a desirable feature in the design of measurement systems integrated with electrodes.
机译:限制电容层析成像(ECT)性能的主要因素是极低的电极间电容值。充电-放电电路具有抗噪声和杂散电容的能力,因此非常适合小电容测量,尽管它存在与模拟开关注入的电荷相关的问题,这会导致直流偏移。本文提出了一种新的基于二极管的电容测量电路,其中无需开关即可实现电荷转移方法。该电路是在带有16个多路复用电极的一个通道配置中构建和测试的。阐述了详细电路的性能以及与经典充放电电路的比较。精心制作的电路可用于电极间电容不小于10fF的传感器。所提出的方法使我们可以获得与经典的充放电电路类似的性能,但是具有简化的设计。在与电极集成的测量系统的设计中,缺少使该电路的发射器和接收器部分中的模拟开关同步的需求可能是期望的特征。

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