Rodrigo Peter John, Iversen Theis F Q, Hu Qi, Pedersen Christian
Opt Express. 2014 Nov 3;22(22):26674-9. doi: 10.1364/OE.22.026674.
We extend the functionality of a low-cost CW diode laser coherent lidar from radial wind speed (scalar) sensing to wind velocity (vector) measurements. Both speed and horizontal direction of the wind at ~80 m remote distance are derived from two successive radial speed estimates by alternately steering the lidar probe beam in two different lines-of-sight (LOS) with a 60° angular separation. Dual-LOS beam-steering is implemented optically with no moving parts by means of a controllable liquid-crystal retarder (LCR). The LCR switches the polarization between two orthogonal linear states of the lidar beam so it either transmits through or reflects off a polarization splitter. The room-temperature switching time between the two LOS is measured to be in the order of 100 μs in one switch direction but 16 ms in the opposite transition. Radial wind speed measurement (at 33 Hz rate) while the lidar beam is repeatedly steered from one LOS to the other every half a second is experimentally demonstrated - resulting in 1 Hz rate estimates of wind velocity magnitude and direction at better than 0.1 m/s and 1° resolution, respectively.
我们将低成本连续波二极管激光相干激光雷达的功能从径向风速(标量)传感扩展到风速(矢量)测量。通过以60°角间距交替地在两个不同视线路径(LOS)中操纵激光雷达探测光束,从两个连续的径向速度估计值中得出约80米远距离处风的速度和水平方向。通过可控液晶延迟器(LCR)以光学方式实现双视线路径光束操纵,且无移动部件。LCR在激光雷达光束的两个正交线性状态之间切换偏振,因此它要么透射过偏振分束器,要么从偏振分束器反射。测量得出,在一个切换方向上,两个视线路径之间的室温切换时间约为100微秒,但在相反转换方向上为16毫秒。实验证明了在激光雷达光束每半秒从一个视线路径重复转向另一个视线路径时进行径向风速测量(速率为33赫兹)——从而分别以优于0.1米/秒和1°的分辨率得出1赫兹速率的风速大小和方向估计值。