基于FPGA的高精度激光回波延时系统设计与实现
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长春理工大学光电工程学院 长春 130022

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TN249;TH744.5

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Design and implementation of a high-precision laser echo delay system based on FPGA
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School of Opto-Electronic Engineering, Changchun University of Science and Technology,Changchun 130022, China

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    摘要:

    针对现有激光回波模拟器难以兼顾大范围与高精度延时的问题,设计了基于FPGA的高精度“粗精调”全数字延时信号控制系统,以提升脉冲激光测距仪性能检测精度。该系统采用时钟计数器与混合模式时钟管理器(MMCM)动态相位调整策略,通过系统时钟为250 MHz的计数器实现粗调延时,利用MMCM相位插值技术实现17.857 ps步进的精细化补偿。结果表明,系统在300~30 000 m测距范围内仿真延时精度优于6 ps,等效距离精度0.01 m;实测延时精度优于1.2 ns,等效距离精度0.18 m,实现了大范围测距场景下的高精度延时控制,为脉冲激光测距仪的性能检测提供了可靠的延时方案。

    Abstract:

    To address the challenge of achieving both wide-range coverage and high-precision delay in conventional laser echo simulators, we designed a fully digital, high-precision delay signal control system with coarse-fine tuning capability, implemented on an FPGA. The system employs a dynamic phase adjustment strategy that integrates a clock counter with a mixed-mode clock manager (MMCM). Coarse delay adjustment is performed using a 250 MHz system clock counter, while fine delay compensation is realized through MMCM-based phase interpolation with 17.857 ps resolution steps. Experimental results demonstrate that, within a simulation range of 300 m to 30 000 m, the delay accuracy is better than 6 ps, corresponding to a distance resolution of 0.01 m. In actual measurements, the delay accuracy exceeds 1.2 ns, equivalent to a distance resolution of 0.18 m. This system achieves precise delay control across a wide range, offering a robust and reliable solution for performance evaluation of pulse laser rangefinders.

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孙尘,王凌云.基于FPGA的高精度激光回波延时系统设计与实现[J].电子测量技术,2025,48(24):177-185

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  • 在线发布日期: 2026-02-04
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