一种简单的多电容测量方案及其在眼麻醉训练系统中的应用

B. Mukherjee, B. George, M. Sivaprakasam
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引用次数: 1

摘要

电容式传感器以其鲁棒性和准确性得到广泛应用。在一些应用中,例如接近检测,必须同时测量多个电容。这可能涉及到多个发送电极和一个连接到要被检测的身体的接收器电极。为了激励发射器电极,将单个正弦源一次复用到每个电极上,同时在被激励电极和接收器之间进行电容测量。这个过程是缓慢的,并且受到所使用的多路复用器的开关速度的限制,因此所涉及的所有电容不能同时测量。为了解决这一问题,本文提出了一种简单的多频电容测量方案。使用二进制计数器产生独特频率的正弦信号,并用作发射机电极的激励。将接收机接收到的位移电流转换为电压信号,对其进行快速傅里叶变换,提取与激励频率对应的频率分量的幅值。因此,所有涉及的电容可以同时测量。仿真研究表明,与基于多路复用器的方案相比,该多频方案具有较低的交叉激励灵敏度。最后,在眼麻醉训练系统中实现了该方案,用于检测针与眼模型重要结构的接近程度。样机的测试结果表明,该方案在检测针的接近性和对各种眼部结构的触摸方面是有效的,从而证明了其在实际接近性检测中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A simple measurement scheme for multiple capacitors and its application to an ophthalmic anesthesia training system
Capacitive sensors are widely used due to their robustness and accuracy. In several applications such as proximity detection, multiple capacitances have to be measured simultaneously. This could involve multiple transmitter electrodes and a receiver electrode connected to the body whose proximity is to be detected. In order to excite the transmitter electrodes, a single sinusoidal source is multiplexed to each electrode one at a time, while capacitance measurements are made between the excited electrode and the receiver. This process is slow and limited by the switching speed of the multiplexer used and hence all the capacitances involved cannot be measured simultaneously. To address this issue, a simple multiple-frequency capacitive measurement scheme is proposed in this paper. Sinusoidal signals of unique frequencies are produced using a binary counter and used as excitation for the transmitter electrodes. The displacement current received by the receiver is converted to a voltage signal and fast Fourier transform is performed on it to extract the magnitudes of the frequency components corresponding to the excitation frequencies. Thus, all the capacitances involved can be measured simultaneously. A simulation study performed, showed that the proposed multiple frequency scheme has low cross-excitation sensitivity compared to the multiplexer based scheme. Finally, the proposed scheme was implemented on an ophthalmic anesthesia training system to detect the proximity of the needle to important structures of the eye model. Test results from a prototype developed show that the scheme is effective in detecting the needle proximity and touch to various ocular structures thus demonstrating its use for practical proximity detection purposes.
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