Hayman Matthew, Thayer Jeffrey P
Department of Electrical and Computer Engineering, University of Colorado, Boulder, CO 80309, USA.
Opt Lett. 2009 Mar 1;34(5):611-3. doi: 10.1364/ol.34.000611.
Depolarization lidar requires discrimination of received power in polarized and unpolarized components of backscattered light. This can be accomplished with only two polarization measurements. However, parallel- and cross-polarization channels in depolarization lidar cannot always be regarded as independent, because system optical components can cause coupling between these channels and transmitter and receiver polarization planes are rarely perfectly aligned. Calibration constants, while in some instances reasonable approximations, do not fully describe the physics of the receiver and potential for coupling between orthogonal polarization modes. We present an analysis of a general receiver design and introduce an algorithm for decoupling the received data, which only requires the parallel- and cross-polarization data typically recorded in depolarization lidar measurements.
去极化激光雷达需要区分后向散射光的偏振分量和非偏振分量中的接收功率。这仅通过两次偏振测量即可完成。然而,去极化激光雷达中的平行偏振通道和交叉偏振通道并不总是能被视为独立的,因为系统光学组件会导致这些通道之间的耦合,而且发射机和接收机的偏振平面很少能完美对齐。校准常数虽然在某些情况下是合理的近似值,但并不能完全描述接收机的物理特性以及正交偏振模式之间的耦合可能性。我们对一种通用的接收机设计进行了分析,并引入了一种用于解耦接收数据的算法,该算法只需要去极化激光雷达测量中通常记录的平行偏振和交叉偏振数据。