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Estimation of Dynamic Errors in Laser Optoelectronic Dimension Gauges for Geometric Measurement of Details

机译:用于细节几何测量的激光光电测距仪中的动态误差估计

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The article reviews the capabilities and particularities of the approach to the improvement of metrological characteristics of fiber-optic pressure sensors (FOPS) based on estimation estimation of dynamic errors in laser optoelectronic dimension gauges for geometric measurement of details. It is shown that the proposed criteria render new methods for conjugation of optoelectronic converters in the dimension gauge for geometric measurements in order to reduce the speed and volume requirements for the Random Access Memory (RAM) of the video controller which process the signal. It is found that the lower relative error, the higher the interrogetion speed of the CCD array. It is shown that thus, the maximum achievable dynamic accuracy characteristics of the optoelectronic gauge are determined by the following conditions: the parameter stability of the electronic circuits in the CCD array and the microprocessor calculator; linearity of characteristics; error dynamics and noise in all electronic circuits of the CCD array and microprocessor calculator.
机译:本文基于对激光几何尺寸测量仪中动态误差的估计估计,回顾了改进光纤压力传感器(FOPS)计量特性的方法的功能和特殊性。结果表明,提出的标准为在几何尺寸测量的尺寸规中共轭光电转换器提供了新的方法,从而降低了处理信号的视频控制器的随机存取存储器(RAM)的速度和体积要求。发现相对误差越小,CCD阵列的插入速度越高。由此表明,光电量规的最大可达到的动态精度特性由以下条件决定:CCD阵列和微处理器计算器中的电子电路的参数稳定性;以及特性的线性CCD阵列和微处理器计算器的所有电子电路中的误差动态和噪声。

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