彭先进, J. M. 瑞格. 威特TC1600速测仪的实验室测试[J]. 武汉大学学报 ( 信息科学版), 1990, 15(4): 16-25.
引用本文: 彭先进, J. M. 瑞格. 威特TC1600速测仪的实验室测试[J]. 武汉大学学报 ( 信息科学版), 1990, 15(4): 16-25.
Peng Xianjin, Jean M. Rü. Laboratory Testing of the Wild Tachymat TC 1600[J]. Geomatics and Information Science of Wuhan University, 1990, 15(4): 16-25.
Citation: Peng Xianjin, Jean M. Rü. Laboratory Testing of the Wild Tachymat TC 1600[J]. Geomatics and Information Science of Wuhan University, 1990, 15(4): 16-25.

威特TC1600速测仪的实验室测试

Laboratory Testing of the Wild Tachymat TC 1600

  • 摘要: 作者对一台威特TC1600速测仪进行了调制频率、加常数与温度、电压的关系试验。当温度在-10℃~+50℃之间变化时,实测频率与显示频率之差的变化量平均为±1.4Hz(或±0.1ppm),加常数没有显著变化(仅为±0.23mm)。电压变化对频率和加常数没有明显影响。此外进行了加常数与信号强度关系的试验。在信号很弱时其最大变化量为1mm。在野外条件下产生的比例误差不超过0.5ppm,在频率-温度试验中采用了仪器的内部温度与显示频率。内部温度与外界温度之差在0℃~+11.5℃之间变化。预热对频率和加常数的影响分别为每30分钟0.2ppm和每100分钟0.24mm,亦可忽略。TC1600在DIST即精测状态下单个观测值的标准差为±0.5mm,在野外试验基线场上根据4至8个距离值计算的平均标准差为±(0.4mm+0.4ppm),短周期误差随距离而变化,但均未超过1mm。

     

    Abstract: The modulation frequency and additive constant of an electronic tacheometer Wild Tachymat TC 1600 were tested versus temperature and supply voltage.The differences between measured and predicted frequencies did vary by only ±1.4 Hz(or±0.1ppm) from the average difference across the entire temperature range from-10℃ to +50℃.Thevariation of the additive constant over the same temperature range was very small(±0.23mm) and statistically insignificant.No significant effects of supply voltage on frequency and additive constant were found.In addition,the additive constant was tested versus signal strength.Changes of 1 mm maximum were found at very low signal strengths creating scale errors of less than 0.5ppm under field conditions.When establishing the frequency-versus-temperature characteristic,full use was made of the accessibility of internally measured temperatures and internally computed predicted frequencies.Internal temperatures differ between 0 and +11.5℃ from ambient temperatures,depending on length of operation,previous temperature exposure and present temperature.The warm-up effects on the difference frequency and the additive constant were also insignificant with 0.2ppm per 30 min.and 0.24mm per 100 min.,respectively.A standard deviation of a single TC 1600 distance observation("DIST" mode) of±0.5mm was found during laboratory tests.On an EDM calibration baseline,average standard deviations of(±0.4mm+0.4ppm) were realized for means of 4 to 8 distance measurements.Short periodic errors were found to change with distance but did not exceed 1 mm amplitude.

     

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