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Application of a low-cost water level circuit for an accurate pulse detection of a tipping-bucket rain gauge as an alternative method for reed switch sensors

机译:低成本水位电路的应用,以填充铲斗雨量计的准确脉冲检测作为簧片开关传感器的替代方法

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This paper introduces a data acquisition mechanism working on similar functionality to that of conventional tipping-bucket rain gauge (TBRG) but unaffected from magnetic and electromagnetic interferences. Unlike the common reed switch application, the mechanism of this study only uses a two-wire water level sensor for tip detection. Specifically, a different method of detecting the tipping count of the rain gauge through a switching type scheme is introduced without using the conventional magnetic detection concept. The designed electronic two-wire TBRG has so many features, with its low-cost and its resistance to metallic or electromagnetic interference the most important. The sensor design makes the circuit assembly applicable to any cylindrical or cube-type rain gauge sizes. The only important thing to properly mount is the placement of the wire contacts. A bottom-feed design was implemented in this study. The RI approximation resulted in relative errors -5%, -3.27%, and -4.73 from the sample flow rates 11mL/min, 32mL/min, and 57mL/min respectively. Underestimations of 0.09mL (approximately 0-mm water depth), 2.48mL (0.45mm), and 5.65mL (1.03mm) were recorded from calculating the tips made without the calibrating algorithms from the 10-mL, 40-mL, and 70-mL samples respectively. Although it proves its measuring ability through its slight underestimation results, the hardware and its corresponding mechanism have proven reliable in accordance with its functionality. The measuring performance of the device proved that it has the capability to work in similar to the conventional TBRG.
机译:本文介绍了一种与传统倾翻雨量雨量(TBRG)相似的类似功能的数据采集机制,但未受到磁性和电磁干扰的影响。与常见的簧片开关应用不同,本研究的机制仅使用双线水位传感器进行尖端检测。具体地,在不使用传统磁检测概念的情况下引入通过切换型方案来检测雨量计的划线计数的不同方法。设计的电子双线TBRG具有如此多的特点,其低成本及其对金属或电磁干扰的抵抗最重要的。传感器设计使电路组件适用于任何圆柱形或立方体型雨量尺寸。正确安装的唯一重要性是电线触点的放置。本研究实施了底部饲料设计。 RI近似导致相对误差-5%,-3.27%和-4.73分别从样品流速11ml / min,32ml / min和57ml / min。低估0.09ml(水深约0毫米),2.48ml(0.45mm)和5.65ml(1.03mm)计算,从计算出没有校准算法的尖端,从10ml,40-ml和70 -ML样本。虽然它通过轻微低估结果证明了其测量能力,但硬件及其相应的机制根据其功能可靠。该装置的测量性能证明它具有与传统TBRG类似的工作能力。

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