【24h】

Wavefront-based Stochastic Parallel Gradient Descent Beam Control

机译:基于波前的随机平行梯度下降光束控制

获取原文
获取原文并翻译 | 示例

摘要

For a non-cooperative target, a laser beacon is created by illuminating the target with a beacon beam. When a beacon beam propagates though deep turbulence, turbulence spreads the beam. A conventional phase conjugate adaptive optics (AO) system is not efficient in the presence of Beacon Anisoplanatism when the beacon beam spot size at the target includes many isoplanatic patch sizes. We introduce a concept of the wavefront-based stochastic parallel gradient decent (WSPGD) AO system, which uses an off-axis wavefront sensor to provide feedback for the beam control algorithm. This concept is based on the finding that the phase aberrations of laser return from the target contain information about beam spot size at the target, and that correction of a limited number of low-order Zernike modes increases on-axis intensity and power in the bucket at the target. We evaluated the WSPGD AO system performance in simulation for two tactical engagement scenarios in the presence of strong turbulence. We found that that the WSPGD AO system can efficiently compensate the effects of strong turbulence including Beacon Anisoplanatism, even when the beam spot size at the target includes up to 20 isoplanatic patch sizes and the isoplanatic angle is by a factor of 2.6 less than the diffraction limit. The Strehl ratio gain for this scenario is 1.6 - 2.5, and the maximum Strehl ratio is achieved after 15-20 iterations. A laboratory demonstration performed under a separate program confirmed our theoretical predictions.
机译:对于非合作目标,可以通过用信标光束照射目标来创建激光信标。当信标光束通过深湍流传播时,湍流使光束扩散。当目标处的信标束光斑尺寸包括许多等平面斑片尺寸时,在存在信标各向异性的情况下,传统的相位共轭自适应光学(AO)系统效率不高。我们介绍了基于波前的随机平行梯度体面(WSPGD)AO系统的概念,该系统使用离轴波前传感器为光束控制算法提供反馈。这个概念基于以下发现:从目标返回的激光的相差包含有关目标处光斑大小的信息,并且对有限数量的低阶Zernike模式的校正会增加铲斗的轴上强度和功率在目标。在存在强烈湍流的情况下,我们针对两种战术交战场景在仿真中评估了WSPGD AO系统的性能。我们发现WSPGD AO系统可以有效地补偿包括信标各向异性等强湍流的影响,即使目标上的束斑尺寸包括多达20个等平面的斑块尺寸,等平面角比衍射小2.6倍限制。在这种情况下,斯特列尔比率增益为1.6-2.5,并且在15-20次迭代后获得了最大斯特列尔比率。在另一个程序下进行的实验室演示证实了我们的理论预测。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号