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Modelling and model verification of an autonomous threshold sensor for humidity measurements

机译:湿度测量自主阈值传感器的建模与模型验证

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Autonomous sensors that receive their energy from an energy harvester or directly from the environment have the potential to save energy for applications in numerous sectors. For humidity sensing, the swelling behaviour of a water vapour-sensitive hydrogel is used. To trigger an electrical contact the mechanical energy is taken from the hydrogel swelling by the bimorph effect. As long as a defined threshold is not reached, the electrical microcontact remains open. By passing the threshold value, a switching will be triggered causing the closure of the contact. This sensor principle does not need any electrical power supply because the switching power is provided directly by the surrounding humidity as quantity to be measured. For the description of the deflection versus the hydrogel pattern of such a sensor, a model was developed by means of the beam theory. Goal of the model was to derive design guidelines for the dimensioning of the sensors bending plate and the patterned hydrogel layer. Experiments then should show the applicability of the model approaches. The deflection of the bending plate depends on the ratio between the lengths of the uncoated and the coated part of the bending plate where the maximum occurs at a ratio of ca.?0.5. The swelling behaviour of the hydrogel shows a high sensitivity with regard to slight changes in relative humidity. This can be used for humidity threshold sensors that open and close microcontacts with respect to very small changes in relative humidity. To avoid voltage peaks and arcs during the switching process that could arise and destroy the microcontact, a bistable characteristic with hysteresis is needed. Experiments demonstrate the feasibility of this concept and are in good agreement with the modelling results.
机译:从能源收割机或直接从环境中接受能量的自主传感器有可能节省众多部门中的应用的能量。对于湿度感测,使用水蒸气敏感水凝胶的溶胀行为。为了触发电触点,通过双峰效应从水凝胶溶胀中取出机械能。只要未达到定义的阈值,电学微电区就会保持打开状态。通过传递阈值,将触发切换,从而闭合触点。该传感器原理不需要任何电源,因为切换电源直接由周围湿度作为待测量的量提供。对于偏转的描述与这种传感器的水凝胶图案相比,通过光束理论开发了一种模型。该模型的目标是推导出用于传感器弯曲板和图案化水凝胶层的尺寸的设计指导。实验然后应显示模型方法的适用性。弯曲板的偏转取决于未涂覆的长度和弯曲板的涂覆部分之间的比率,其中最大值以约育比例发生。水凝胶的肿胀行为显示出相对湿度的微小变化的高灵敏度。这可用于湿度阈值传感器,其相对于相对湿度的非常小的变化打开和关闭微接触。为了避免在可以产生和破坏微接触的切换过程中的电压峰和弧,需要具有滞后的双稳态特性。实验表明了这一概念的可行性,并与建模结果一致。

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