绝对光学旋转编码器的编码优化

Ting-Feng Wang, Yung-Jhe Yan, H. Chiang, T. Chen, M. Ou‐Yang
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引用次数: 2

摘要

精确定位系统的重要性日益凸显。其中一种实现方法是光学旋转编码器系统,该系统由固定光源、光电探测器组和编码盘组成。实际上,位置分辨率受光盘上编码排列的影响。从光电探测器发射的模拟信号中发现直流电压不稳定。在这种情况下,设置数字二值化的阈值电压变得困难。本文分析了光盘编码的局限性、特点及操作方式,观察了光盘编码的操作方式及排列规则。通过搜集相关文献,找到了与上述规则和限制的排列方式相匹配的数学序列De Bruijn序列。利用所设计的算法,对期望需求进行汇总,并从所有解集中筛选出最优解。最后,对新旧方案的特点进行了比较和讨论。
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Coding optimization for the absolute optical rotary encoder
Precise positioning system is assuming increasing importance. One of Implementation is an optical rotary encoder system which is composed of a fixed light source, a group of photodetectors, and a coding disc. In fact, position resolution is affected with a permutation of coding on the disc. Unstable dc voltage was found from an analog signal transmitted by photoelectric detectors. Setting up a threshold voltage for digital binarization become difficult in this case.In this paper, the limitations, characteristics and operation mode of coding on the disc operation mode arrangement rules of coding on the disc was observed. After collecting the relevant literature, the mathematical sequence named De Bruijn sequence which matches to the arrangement of the above rules and restrictions was found. The desired requirements are summarized and used to filter out the best solution in all solution sets with the designed algorithm. Finally, the characteristics of new and old solutions are compared and discussed.
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