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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,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,可以将在Lab VIEW上编程的基于现场可编程门阵列(FPGA)的Shack-Hartmann波前传感器(SHWS)高度集成到自定义应用程序中,例如用于执行实时波前测量的自适应光学系统(AOS)。此外,考虑到其具有最高数据传输带宽的优势,采用了嵌入有FPGA的Camera Link图像采集卡,以提高传感器对变化做出反应的速度。 Shack-Hartmann算法无需等待FPGA捕获帧图像,而是在并行处理模块设计中实现,并使图像数据传输与波前重建同步。另一方面,我们设计了一种机制来控制同一FPGA中的可变形反射镜,并通过控制可变形反射镜动态表面变形的频率来验证Shack-Hartmann传感器的速度。目前,这种FPGA磁珠SHWS设计可以达到266 Hz的循环速度,该速度受相机帧速率限制,并留下40%的逻辑片,以实现额外的灵活设计。

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