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A Novel Absolute Magnetic Encoder based on Pseudorandom Code

机译:基于伪随机码的新型绝对磁编码器

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In order to improve resolution of multi-pole encoder and realize absolute output, a novel absolute multi-pole encoder structure based on calibration was proposed. Two ring alnicos, defined as look-up table track and index track were used as magnetic source. Look-up table track was magnetized to 8 N-S, three linear evenly placed Hall ICs which air gap is 2mm are used to translate magnetic filed to voltage signals, the relative offset in a single N-S can be get by look-up table. The index track was magnetized according the sequence that get by pseudorandom code, three Hall ICs were used to change N, S to 1 or 0 for getting the absolute offset of the signal period that the shaft belongs to. The magnetic encoder is calibrated using higher resolution incremental optical encoder, the pulse output from optical encoder and Hall signals from magnetic encoder are sampled at the same time and transmitted to PC, the relation between them can be get, and stored in the ROM of MCU for look up. While in the working state, the absolute angle can be get by looking-up table according to Hall signals. Its structure is very simple and cost is low.
机译:为了提高多极编码器的分辨率并实现绝对输出,提出了一种基于标定的新型绝对多极编码器结构。定义为查询表磁道和索引磁道的两个环形电子设备用作磁源。查表磁化至8 N-S,三个气隙为2mm的线性均匀放置的霍尔IC用于将磁场转换成电压信号,单个N-S中的相对偏移可通过查表获得。索引磁道根据伪随机码得到的序列磁化,使用三个霍尔IC将N,S更改为1或0,以获取轴所属信号周期的绝对偏移。磁编码器使用高分辨率增量式光学编码器进行校准,同时对来自光学编码器的脉冲输出和来自磁性编码器的霍尔信号进行采样,并将其传输到PC,可以获取它们之间的关系并将其存储在MCU的ROM中查找。在工作状态下,可以根据霍尔信号通过查表获得绝对角度。它的结构非常简单,成本低廉。

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