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Capacitance-to-voltage converter design to measure small change in capacitance produced by human body movement

机译:电容电压转换器设计,可测量人体运动产生的电容的微小变化

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The primary application of this work is to design and develop a reliable capacitance sensing system for measuring very small capacitive changes at low frequencies for human interface application. The sensing system is applicable in monitoring and characterizing human body movement. The interface circuit measures very small capacitive variation. A number of capacitive values have been set in the proposed system and the produced capacitance variations have been measured for verifying the possibility to characterize the presence/absence of human bodies. A variation in capacitance results in variation on the output voltage. Based on change in the voltage conclusion can be made regarding the presence/absence state of the human body. The sensing method is based on the fundamental principle of capacitance changes that is produced by the interaction of a human body with capacitive sensors. Different human body will exhibit different capacitance due to their height, weight and so on; giving each person distinctive identification. Primary simulation results show that the measurement of little capacitance variation using an interface circuit is precise and linear. The simulation results conclude that a very small capacitive variation can be detected using the developed capacitive sensing method. When a human body enters in the vicinity area right above the sensor, a variation in capacitance as well as output voltage can be observed.
机译:这项工作的主要应用是设计和开发一种可靠的电容感应系统,用于在低频下测量人机界面应用中很小的电容变化。该传感系统适用于监测和表征人体运动。接口电路测量的电容变化非常小。在所提出的系统中已经设置了许多电容值,并且已经测量了产生的电容变化,以验证表征人体存在/不存在的可能性。电容的变化导致输出电压的变化。基于电压的变化,可以得出关于人体的存在/不存在状态的结论。感测方法基于电容变化的基本原理,该原理是由人体与电容传感器的相互作用产生的。由于身高,体重等原因,不同的人体将表现出不同的电容;给每个人以独特的身份。初步的仿真结果表明,使用接口电路对电容变化的测量是精确且线性的。仿真结果表明,使用开发的电容感测方法可以检测到非常小的电容变化。当人体进入传感器正上方的附近区域时,可以观察到电容以及输出电压的变化。

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