Fan Chuncan, Yang Juxin, Liu Jiqiao, Bu Lingbing, Wang Qin, Wei Chong, Zhang Yang, Zhu Xiaopeng, Li Shiguang, Zang Huaguo, Chen Weibiao
Appl Opt. 2024 Mar 20;63(9):2121-2131. doi: 10.1364/AO.507905.
An integrated path differential absorption (IPDA) lidar can accurately measure regional weighted column average concentrations ( ), which are crucial for understanding the carbon cycle in climate change studies. To verify the performance and data inversion methods of space-borne IPDA lidar, in July 2021, we conducted an airborne lidar validation experiment in Dunhuang, Gansu Province, China. An aircraft was equipped with a lidar system developed to measure and an in situ greenhouse gas analyzer (GGA). To minimize measurement errors, energy monitoring was optimized. The system bias error of the DAOD was determined by changing the laser output mode from the off/on to the on/on mode. The inversion results obtained through comparing the schemes of averaging signals before "log (logarithm)" and averaging after "log" indicate that the former performs better. The IPDA lidar measured over the validation site at 405.57 ppm, and both the IPDA lidar and GGA measured sudden changes in the concentration. The assimilation data showed a similar trend according to the altitude to the data measured by the in situ instrument. A comparison of the mean derived from the GGA results and assimilation data with the IPDA lidar measurements showed biases of 0.80 and 1.12 ppm, respectively.
一种综合路径差分吸收(IPDA)激光雷达能够精确测量区域加权柱平均浓度( ),这对于理解气候变化研究中的碳循环至关重要。为了验证星载IPDA激光雷达的性能和数据反演方法,2021年7月,我们在中国甘肃省敦煌进行了一次机载激光雷达验证实验。一架飞机配备了为测量 而开发的激光雷达系统和一台现场温室气体分析仪(GGA)。为了将测量误差降至最低,对能量监测进行了优化。通过将激光输出模式从关闭/开启改为开启/开启模式来确定差分吸收光学厚度(DAOD)的系统偏差误差。通过比较“对数(logarithm)”之前平均信号和“对数”之后平均信号的方案所获得的反演结果表明,前者表现更好。IPDA激光雷达在验证站点测量的 为405.57 ppm,IPDA激光雷达和GGA均测量到了 浓度的突然变化。同化数据显示出与现场仪器测量数据相似的随海拔高度变化的趋势。将GGA结果和同化数据得出的平均 与IPDA激光雷达测量结果进行比较,偏差分别为0.80 ppm和1.12 ppm。