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Real time system for GLAS on WHT

机译:玻璃实时系统

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The new ground layer adaptive optics system (GLAS) on the William Herschel Telescope (WHT) on La Palma will be based on the existing natural guide star adaptive optics system called NAOMI. A part of the new developments is a new control system for the tip-tilt mirror. Instead of the existing system, built around a custom built multiprocessor computer made of C40 DSPs, this system uses an ordinary PC machine and a Linux operating system. It is equipped with a high sensitivity L3 CCD camera with effective readout noise of nearly zero. The software design for the tip-tilt system is being completely redeveloped, in order to make a use of object oriented design which should facilitate easier integration with the rest of the observing system at the WHT. The modular design of the system allows incorporation of different centroiding and loop control methods. To test the system off-sky, we have built a laboratory bench using an artificial light source and a tip-tilt mirror. We present results of tip-tilt correction quality using different centroiding algorithms and different control loop methods at different light levels. This system will serve as a testing ground for a transition to a completely PC-based real-time control system.
机译:La Palma威廉·赫尔赫望远镜(WHT)的新地面层自适应光学系统(GLAS)将基于名为Naomi的现有天然导航星自适应光学系统。一部分新的开发是尖端倾斜镜的新控制系统。该系统使用普通的PC机和Linux操作系统,而不是现有系统,而不是现有系统。它配备了高灵敏度L3 CCD相机,具有近零的有效读数噪声。尖端倾斜系统的软件设计完全重新开发,以便使用面向对象的设计,这应该有助于与WHT处的其他观察系统的其余部分集成。系统的模块化设计允许结合不同的刻心和环路控制方法。为了测试系统,我们已经使用人造光源和尖端倾斜镜构成了一个实验室工作台。我们使用不同光线水平的不同刻心算法和不同控制回路方法呈现尖端倾斜校正质量的结果。该系统将作为过渡到完全基于PC的实时控制系统的测试场所。

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