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Rapid and highly integrated FPGA-based Shack-Hartmann wavefront sensor for adaptive optics system

机译:基于FPGA的快速和高度集成的Shack-Hartmann波前传感器,用于自适应光学系统

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In this study, a field programmable gate array (FPGA)-based Shack-Hartmann wavefront sensor (SHWS) programmed on Lab VIEW can be highly integrated into customized applications such as adaptive optics system (AOS) for performing real-time wavefront measurement. Further, a Camera Link frame grabber embedded with FPGA is adopted to enhance the sensor speed reacting to variation considering its advantage of the highest data transmission bandwidth. Instead of waiting for a frame image to be captured by the FPGA, the Shack-Hartmann algorithm are implemented in parallel processing blocks design and let the image data transmission synchronize with the wavefront reconstruction. On the other hand, we design a mechanism to control the deformable mirror in the same FPGA and verify the Shack-Hartmann sensor speed by controlling the frequency of the deformable mirror dynamic surface deformation. Currently, this FPGA-bead SHWS design can achieve a 266 Hz cyclic speed limited by the camera frame rate as well as leaves 40% logic slices for additionally flexible design.
机译:在这项研究中,现场可编程门阵列(FPGA)的Lab VIEW的编程可高度集成到定制的应用的Shack-Hartmann波前传感器(SHWS)如自适应光学系统(AOS),用于执行实时波前测量。此外,采用嵌入FPGA的摄像机链路帧抓取器来增强对考虑其最高数据传输带宽的变化的传感器速度。不是等待FPGA捕获的帧图像,Shack-Hartmann算法在并行处理块设计中实现,并让图像数据传输与波前重建同步。另一方面,我们设计一种控制相同FPGA中可变形镜的机制,通过控制可变形镜动态表面变形的频率来验证Shack-Hartmann传感器速度。目前,这种FPGA-Bead Shws设计可以通过相机帧速率实现266 Hz循环速度,以及叶40%的逻辑切片,用于另外灵活的设计。

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