无线通信大气电场传感器的设计与标定

R. Parizotto, A. Mesquita, R. W. Porto
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引用次数: 3

摘要

评估雷击放电可能性的能力是制定安全相关决策的重要资源,能够减少能源部门关闭造成的损失以及其他损害。大气电场传感器用于测量地球和风暴云之间区域的电场大小,并估计该电场的值在多大程度上接近放电的阈值。本文介绍了一种采用两组两极电极采集与传感器上电场成正比的差分电流的电场型EFM传感器的研制。数据通过一套称为Zigbee的通信协议以无线方式发送,并在接口上进行分析。传感器校准使用两个相距72.9 cm的导电板,通过在两者之间施加直流电压,产生具有归一化不确定度的理论上已知的电场。该样机通过验证板上电压与测量电场之间的线性关系的方法,实现了大于593 V/m值的不确定度为0.7%,小于296 V/m值的不确定度为1.1%,最大扩展不确定度为2.2%。
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Design and calibration of an atmospheric electric field sensor with wireless comunication
The ability to evaluate the possibility of a lightning discharge is a important resource in making safety-related decisions, and enables the reduction of losses due to shutdowns in the energy sector, as well as other damages. The atmospheric electric field sensors are used to measure the magnitude of the electric field in a region between the earth and a storm cloud, and estimate how much the value of this field is approaching the threshold for an electric discharge. This paper presents the development of a sensor of electric field type EFM with two sets of 2-pole electrodes to the acquisition of differential current proportional to the electric field over the sensor. The data are sent in wireless way through a set of communication protocols called Zigbee, and are analyzed on an interface. The sensor calibration was performed using two conductive plates separated by a distance of 72.9 cm, by applying a DC voltage there between, producing an electric field theoretically known with normalized uncertainty. The prototype achieved through the method of validation the linearity between voltage on the plates, and the measured electric field with combined uncertainty for values greater than 593 V/m of 0.7% and for next values of 296 V/m of 1.1%, and a maximum expanded uncertainty of 2.2%.
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