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Innovative Fiber-Laser Architecture-Based Compact Wind Lidar

机译:创新的基于光纤激光架构的紧凑型激光雷达

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This paper describes an innovative, compact and eyesafe coherent lidar system developed for use in wind and wake vortex sensing applications. This advanced lidar system is field ruggedized with reduced size, weight, and power consumption (SWaP) configured based on an all-fiber and modular architecture. The all-fiber architecture is developed using a fiber seed laser that is coupled to uniquely configured fiber amplifier modules and associated photonic elements including an integrated 3D scanner. The scanner provides user programmable continuous 360 degree azimuth and 180 degree elevation scan angles. The system architecture eliminates free-space beam alignment issues and allows plug and play operation using graphical user interface software modules. Besides its all fiber architecture, the lidar system also provides pulsewidth agility to aid in improving range resolution. Operating at 1.54 microns and with a PRF of up to 20 KHz, the wind lidar is air cooled with overall dimensions of 30" × 46" × 60" and is designed as a Class 1 system. This lidar is capable of measuring wind velocities greater than 120 +/- 0.2 m/s over ranges greater than 10 km and with a range resolution of less than 15 m. This compact and modular system is anticipated to provide mobility, reliability, and ease of field deployment for wind and wake vortex measurements. The current lidar architecture is amenable for trace gas sensing and as such it is being evolved for airborne and space based platforms. In this paper, the key features of wind lidar instrumentation and its functionality are discussed followed by results of recent wind forecast measurements on a wind farm.
机译:本文介绍了一种创新的,紧凑的,对人眼安全的相干激光雷达系统,该系统开发用于风和尾流涡流传感应用。这种先进的激光雷达系统经过现场加固,以全光纤和模块化架构为基础,具有减小的尺寸,重量和功耗(SWaP)。全光纤架构是使用光纤种子激光器开发的,该光纤种子激光器与独特配置的光纤放大器模块以及包括集成3D扫描仪的相关光子元件耦合。扫描仪可提供用户可编程的连续360度方位角和180度仰角扫描角。该系统架构消除了自由空间光束对准问题,并允许使用图形用户界面软件模块进行即插即用操作。除了其所有光纤架构之外,激光雷达系统还提供了脉宽敏捷性,以帮助提高距离分辨率。激光雷达以1.54微米的工作频率和高达20 KHz的PRF进行风冷,整体尺寸为30“×46”×60“,设计为1类系统。该激光雷达可测量更大的风速在大于10 km的范围内且小于15 m的范围分辨率下,其速度大于120 +/- 0.2 m / s。这种紧凑且模块化的系统有望为风和尾流涡流测量提供移动性,可靠性和易现场部署性。目前的激光雷达架构适用于痕量气体传感,因此正逐步发展为适用于机载和太空平台,本文讨论了激光雷达仪器的关键特性及其功能,并结合最近的风能测量结果进行了讨论。风电场。

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