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TDC-GP22 high-precision time measurement based on FPGA and linear regression mapping

机译:基于FPGA和线性回归映射的TDC-GP22高精度时间测量

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In the research of high precision pulse laser ranging system, the accuracy of time measurement determines the accuracy of distance measurement. In order to improve the accuracy of traditional time measurement methods, a complex structure combining multiple methods is often used, and it is difficult to achieve high-precision and low-cost time measurement at the same time. In order to save costs and improve the accuracy of time interval measurement, this paper proposes a linear regression mapping method to reduce the error in the time interval measurement of the TDC-GP22 chip based on FPGA. The real value of the system is as the independent variable. The measured value is as the dependent variable. After fitting the straight line, the measurement result projects onto the straight line of the relationship between the independent variable and the real value. The experimental results show that the time interval measurement of this scheme has high accuracy, the average time measurement error is 0.18ns. Pulse ranging scheme error is 0.054m.
机译:在高精度脉冲激光测距系统的研究中,时间测量的精度决定了距离测量的精度。为了提高传统时间测量方法的准确性,经常采用将多种方法结合起来的复杂结构,难以同时实现高精度和低成本的时间测量。为了节省成本,提高时间间隔测量的准确性,提出了一种线性回归映射方法,以减少基于FPGA的TDC-GP22芯片时间间隔测量中的误差。系统的实际价值是自变量。测量值作为因变量。拟合直线后,测量结果将投影到自变量与实际值之间的关系的直线上。实验结果表明,该方案的时间间隔测量精度高,平均时间测量误差为0.18ns。脉冲测距方案误差为0.054m。

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