Zhang Yunpeng, Wu Yunbin, Xia Haiyun
Opt Lett. 2021 Nov 15;46(22):5550-5553. doi: 10.1364/OL.442121.
A high spatial resolution coherent Doppler wind lidar (CDWL) incorporating the differential correlation pair (DCP) technique is proposed and demonstrated. By employing pulse pair with appropriate window functions, the spatial resolution can be enhanced, as the common parts of the correlation pair can be eliminated in the differential data processing. The performance of the new method is validated in the comparison experiment with the CDWLs adopting conventional schemes. Under a given peak power, the DCP technique provides higher wind velocity accuracy compared with a conventional pulsed CDWL where the laser spectral broadening caused by short pulses can be avoided and the carrier-to-noise ratio is improved. At a laser peak power of 250 W, with a spatial and temporal resolution of 3.3 m and 1 s, continuous radial wind profiling over 700 m is realized with a maximum error of 0.1 m/s.
提出并演示了一种采用差分相关对(DCP)技术的高空间分辨率相干多普勒测风激光雷达(CDWL)。通过使用具有适当窗函数的脉冲对,可以提高空间分辨率,因为在差分数据处理中可以消除相关对的公共部分。在与采用传统方案的CDWL的对比实验中验证了该新方法的性能。在给定峰值功率下,与传统脉冲CDWL相比,DCP技术提供了更高的风速精度,可避免短脉冲引起的激光光谱展宽并提高载噪比。在激光峰值功率为250W时,空间和时间分辨率分别为3.3m和1s,实现了700m范围内的连续径向风廓线测量,最大误差为0.1m/s。