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DESIGN OF LIMIT-SWITCH SENSORS BASED ON DISCONTINUITY-INDUCED NONLINEARITIES

机译:基于不连续性非线性的限位开关传感器设计

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摘要

Limit-switch sensors are input-output devices that switch operating state in reaction to the crossing of a threshold value of their input. These are used to monitor and control critical values of temperature, voltage, pressure, etc. in both consumer and industrial settings. This paper argues for exploiting nons-mooth fold bifurcations in the design of ultrafast and robust, re-settable, electromechanical limit switches. Specifically, the discussion emphasizes the dramatic changes in system response associated with the onset of near-grazing, low-velocity contact in vibro-impacting systems. These include rapid transient dynamics away from a pre-grazing, periodic, steady-state trajectory following the onset of impacts and post-grazing steady-state trajectories with distinctly different amplitude and frequency content. The results reported here include an experimental and computational verification of the ultrafast transient growth rates that show a significant potential for dramatic improvement in sensor performance. Moreover, two novel candidate sensor designs are discussed that rely on the post-grazing response characteristics for device function. In the first instance, transduction of a change in the response periodicity following grazing in a mechanical device is detected in a coupled electromagnetic circuit. In the second instance, a snap-through post-grazing response forms the operating principle of a capacitively-driven circuit protection device.
机译:限位开关传感器是输入输出设备,可根据输入阈值的变化来切换操作状态。这些用于监视和控制消费和工业环境中的温度,电压,压力等临界值。本文认为在超快速,坚固,可复位的机电限位开关的设计中要利用非光滑折叠分叉。具体而言,讨论着重于与震动冲击系统中的近掠,低速接触的发生相关的系统响应的急剧变化。这些包括快速的瞬态动力学,远离冲击发生后的放牧前,周期性,稳态轨迹,以及放牧后的稳态轨迹,其幅度和频率含量明显不同。此处报告的结果包括超快瞬态增长率的实验和计算验证,这些瞬态增长率显示出显着提高传感器性能的巨大潜力。此外,讨论了两种新颖的候选传感器设计,这些设计依赖于掠后响应特性来实现设备功能。在第一种情况下,在耦合的电磁电路中检测到机械设备中掠食后响应周期的变化。在第二种情况下,快速掠过响应形成了电容驱动电路保护设备的工作原理。

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