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Measurement and Modeling Mutual Capacitance of Electrical Wiring and Humans

机译:电气配线和人的互电容的测量和建模

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摘要

In a recent series of electric field sensing experiments, a theremin was used to measure the mutual capacitance between a human being and a length of electrical wiring. The instrument, based on the LM555 circuit, measures the deflections in capacitance due to the proximity of a human. The measurements are repeatable, and the difference in capacitance for a person at 0.5 m with a person at 1 m is consistent with the difference computed, assuming the human acts as a ground plane for the wiring. Much of the current literature in electric field sensing focuses on measures and models of mutual capacitance for humans interacting with plate conductors [J. R. Smith, Electric field imaging, Ph.D. dissertation, Mass. Inst. Technol., Cambridge, MA, 1999; N. Karlsson and J. O. Jarrhed, A capacitive sensor for the detection of humans in a robot cell, in Proc. IEEE IMTC Rec., May 18–20, 1993 pp. 164–166.], especially fingers near touch screens [D. Wiebe, A. Machynia, K. Mazur, and J. Epp, Human–computer interface device based on electric field sensing, Ph.D. dissertation, Univ. Manitoba, Winnipeg, MB, Canada, 2004]. The present investigation considers conducting wires to allow the development of portable rapidly deployable human proximity sensing systems that exploit existing electrical infrastructure in buildings. The experiment described here demonstrates that sensing with wires is possible at ranges on the order of a meter and provides evidence that modeling the person as a ground plane of finite extent provides a rough estimate of the change in mutual capacitance.
机译:在最近的一系列电场感应实验中,使用了Theremin来测量人与电线长度之间的互电容。该仪器基于LM555电路,可测量由于人体接近而引起的电容偏差。这些测量是可重复的,假设人员充当布线的接地层,则0.5 m处的人员与1 m处的人员的电容差异与计算得出的差异一致。当前电场感应的许多文献都集中在人类与平板导体相互作用的互电容的量度和模型上[J. R. Smith,电场成像,博士学位。论文,麻省理工学院。 Technol。,Cambridge,MA,1999; N. Karlsson和J. O. Jarrhed,Proc中用于检测机器人单元中人的电容式传感器。 IEEE IMTC Rec。,1993年5月18-20日,第164-166页。],尤其​​是手指靠近触摸屏[D. Wiebe,A。Machynia,K。Mazur和J. Epp,基于电场感应的人机界面设备,博士。论文,大学曼尼托巴省,温尼伯,MB,加拿大,2004年]。本研究考虑了导线,以允许开发可利用建筑物中现有电气基础设施的便携式快速部署人类接近感测系统。此处描述的实验证明,在大约一米的范围内可以用电线进行感应,并提供证据表明将人建模为有限程度的接地平面可以粗略估计互电容的变化。

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