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基于FPGA的高性能激光雷达测距系统设计
引用本文:李欢,余红英. 基于FPGA的高性能激光雷达测距系统设计[J]. 电子测量技术, 2021, 44(20): 6-10
作者姓名:李欢  余红英
作者单位:中北大学 电气与控制工程学院 太原 030051
摘    要:针对低功耗激光测距雷达量程和精度难以兼顾的问题,设计了一套基于FPGA的高性能激光雷达测距系统.该系统首先利用14阶M序列伪随机码以100 MHz频率调制发射激光,并使用双口BRAM乒乓读写实现回波光子累计,还原回波信号.其次通过相关性计算获取测距信息来建立回波概率模型,并利用质心算法提高测距精度.最后搭建了雷达系统原...

关 键 词:激光测距  伪随机码调制  光子累计  质心算法  FPGA

Design of high performance lidar ranging system based on FPGA
Li Huan,Yu Hongying. Design of high performance lidar ranging system based on FPGA[J]. Electronic Measurement Technology, 2021, 44(20): 6-10
Authors:Li Huan  Yu Hongying
Affiliation:College of Electrical and Control Engineering,North University of China,Taiyuan 030051,China
Abstract:Aiming at the problem that the range and accuracy of low-power laser ranging radar are difficult to balance, a high-performance laser radar ranging system based on FPGA is designed. The system first uses the 14-order M-sequence pseudo-random code to modulate the emission laser at a frequency of 100MHz, and uses dual-port BRAM ping-pong read and write to realize the accumulation of echo photons and restore the echo signal. Then the distance measurement information is obtained through correlation calculation to establish the echo probability model, and the centroid algorithm is used to improve the accuracy of the distance measurement. Finally, a prototype of the radar system is built. The range error is stable at ±2cm when the distance is measured in a 100-meter space environment; when the optical fiber delay method is used to measure the equivalent target of 14.8km, the range accuracy is better than 0.1m. The experimental results show that the system can improve the ranging accuracy when the laser modulation frequency is lower, effectively reduce the difficulty of data processing, and finally realize long-distance high-precision lidar ranging.
Keywords:laser ranging   pseudo-random code modulation   photon accumulation   centroid algorithm   FPGA
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