红外与激光工程
紅外與激光工程
홍외여격광공정
INFRARED AND LASER ENGINEERING
2014年
11期
3570-3576
,共7页
唐磊%吴海滨%孙东松%舒志峰
唐磊%吳海濱%孫東鬆%舒誌峰
당뢰%오해빈%손동송%서지봉
激光雷达%F- P标准具%瑞利散射%多普勒频率%系统误差
激光雷達%F- P標準具%瑞利散射%多普勒頻率%繫統誤差
격광뢰체%F- P표준구%서리산사%다보륵빈솔%계통오차
lidar%Fabry- Perot etalon%Rayleigh backscattering%Doppler shift%system accuracy
系统全面地分析了各种影响因素对瑞利散射多普勒测风激光雷达系统误差的影响,确定了透过率曲线校准精度对系统测量误差起主要作用,同时必须考虑激光频率锁定误差、气溶胶及大气温度估计误差对系统测量误差的影响。实验结果表明:温度和后向散射比相同时,由校准参数差异引起的系统误差比理论值增加10倍以上;后向散射比相同时,系统误差随温度估计误差和多普勒频率增大而增大;大气温度估计误差5 K,校准误差产生的径向速度测量误差随高度和多普勒频率变化,在18 km左右达到峰值,最大值1.4 m/s。
繫統全麵地分析瞭各種影響因素對瑞利散射多普勒測風激光雷達繫統誤差的影響,確定瞭透過率麯線校準精度對繫統測量誤差起主要作用,同時必鬚攷慮激光頻率鎖定誤差、氣溶膠及大氣溫度估計誤差對繫統測量誤差的影響。實驗結果錶明:溫度和後嚮散射比相同時,由校準參數差異引起的繫統誤差比理論值增加10倍以上;後嚮散射比相同時,繫統誤差隨溫度估計誤差和多普勒頻率增大而增大;大氣溫度估計誤差5 K,校準誤差產生的徑嚮速度測量誤差隨高度和多普勒頻率變化,在18 km左右達到峰值,最大值1.4 m/s。
계통전면지분석료각충영향인소대서리산사다보륵측풍격광뢰체계통오차적영향,학정료투과솔곡선교준정도대계통측량오차기주요작용,동시필수고필격광빈솔쇄정오차、기용효급대기온도고계오차대계통측량오차적영향。실험결과표명:온도화후향산사비상동시,유교준삼수차이인기적계통오차비이론치증가10배이상;후향산사비상동시,계통오차수온도고계오차화다보륵빈솔증대이증대;대기온도고계오차5 K,교준오차산생적경향속도측량오차수고도화다보륵빈솔변화,재18 km좌우체도봉치,최대치1.4 m/s。
All factors affecting the system error were comprehensive taken into account for Rayleigh Doppler wind lidar in this paper. The calibration accuracy of the transmission curve parameters of the three- channel Fabry- Perot etalon contributes mostly effect to the system error, and the tracking accuracy of laser frequency, aerosol and the estimation error of atmosphere temperature contributing to the system error must be taken into account simultaneously. Experiment results demonstrate that the system error calculated by the calibration parameters error is 10 times bigger than it calculated by the design parameters when the atmosphere temperature and the backscattering ratio are unchanged. The system error increases with the estimation error of atmosphere temperature and the Doppler frequency when the backscattering ratio is constant. The system error produced by the calculation accuracy of the transmission parameters increase with the altitude and the Doppler shift with local maximum value 1.4 m/s at 18 km altitude.