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The Large Binocular Telescope azimuth and elevation encoder system

机译:大型双筒望远镜方位角和仰角编码器系统

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A typical high-resolution encoder interpolator relies on careful mechanical alignment of the encoder read-heads and tight electrical tolerances of the signal processing electronics to ensure linearity. As the interpolation factor increases, maintaining these tight mechanical and electrical tolerances becomes impractical. The Large Binocular Telescope (LBT) is designed to utilize strip-type encoders on the main axes. Because of the very large scale of the telescope, the accumulative length of the azimuth and elevation encoder strips exceeds 80 meters, making optical tape prohibitively expensive. Consequently, the designers of the LBT incorporated the far less expensive Farrand Controls Inductosyn~® linear strip encoder to encode the positions of the main axes and the instrument rotators. Since the cycle pitch of these encoders is very large compared to that of optical strip encoders, the interpolation factor must also be large in order to achieve the 0.005 arcsecond encoder resolution as specified. The authors present a description of the innovative DSP-based hardware / software solution that adaptively characterizes and removes common systematic cycle-to-cycle encoder interpolation errors. These errors can be caused by mechanical misalignment, encoder manufacturing flaws, variations in electrical gain, signal offset or cross-coupling of the encoder signals. Simulation data are presented to illustrate the performance of the interpolation algorithm, and telemetry data are presented to demonstrate the actual performance of the LBT main-axis encoder system.
机译:典型的高分辨率编码器插值器依赖于编码器读头的仔细机械对准以及信号处理电子设备的严格电气公差,以确保线性。随着插值因子的增加,保持这些严格的机械和电气公差变得不切实际。大型双筒望远镜(LBT)旨在在主轴上使用带状编码器。由于望远镜的规模很大,因此方位角和仰角编码器条的累积长度超过80米,这使得光学带非常昂贵。因此,LBT的设计者采用了价格便宜得多的Farrand Controls Inductosyn〜®线性条带编码器来对主轴和仪器旋转器的位置进行编码。由于与光带编码器相比,这些编码器的周期节距非常大,因此插值因数也必须很大,才能达到指定的0.005弧秒编码器分辨率。作者介绍了创新的基于DSP的硬件/软件解决方案,该解决方案可以自适应地表征并消除常见的系统周期到周期编码器插值误差。这些错误可能是由于机械未对准,编码器制造缺陷,电增益变化,信号偏移或编码器信号的交叉耦合引起的。仿真数据用于说明插值算法的性能,遥测数据用于说明LBT主轴编码器系统的实际性能。

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