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Calibration technology of length measurement accuracy of total station in automatic air refractive index compensation system

机译:自动折射率补偿系统总站长度测量精度的校准技术

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In order to realize high precision calibration of total station, an automatic compensation system for air refractive index has been developed, including sensor array system and data processing system. The sensor array system consists of 82 temperature, humidity and air pressure sensors, forming a dense sensor array, monitoring the changes of environmental parameters along the baseline. The data processing system automatically compensates the air refractive index for different measurement sections in real time. Based on the Changping baseline of National Institute of Metrology, China, real-time and time-delay experiments were carried out to compensate the refractive index of air for the measured distance of the total station.. The experimental results show that the maximum measurement error is about 1 mm when the environmental parameters with 14 seconds delay are compensated, nearly 10% of the data reach the error of 0.5mm. The time-delay compensated measured distance will affect the accuracy. It shows that the calibration accuracy of total station can be effectively improved by using the developed automatic air refractive index compensation system.
机译:为了实现总站的高精度校准,已经开发了一种用于空气折射率的自动补偿系统,包括传感器阵列系统和数据处理系统。传感器阵列系统由82个温度,湿度和空气压力传感器组成,形成密集的传感器阵列,监测基线环境参数的变化。数据处理系统实时地自动补偿不同测量部分的空气折射率。基于国家计量研究所,中国,实时和时滞实验的昌平基线进行,以补偿全站仪测量距离的空气折射率。实验结果表明最大测量误差当具有14秒延迟的环境参数补偿时约为1毫米,近10%的数据达到0.5mm的误差。时间延迟补偿测量距离会影响精度。它表明,通过使用开发的自动折射率补偿系统,可以有效地改善总站的校准精度。

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