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A New Methodology for Vibration Error Compensation of Optical Encoders

机译:光学编码器振动误差补偿的新方法

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摘要

Optical encoders are sensors based on grating interference patterns. Tolerances inherent to the manufacturing process can induce errors in the position accuracy as the measurement signals stand apart from the ideal conditions. In case the encoder is working under vibrations, the oscillating movement of the scanning head is registered by the encoder system as a displacement, introducing an error into the counter to be added up to graduation, system and installation errors. Behavior improvement can be based on different techniques trying to compensate the error from measurement signals processing. In this work a new “ad hoc” methodology is presented to compensate the error of the encoder when is working under the influence of vibration. The methodology is based on fitting techniques to the Lissajous figure of the deteriorated measurement signals and the use of a look up table, giving as a result a compensation procedure in which a higher accuracy of the sensor is obtained.
机译:光学编码器是基于光栅干涉图样的传感器。当测量信号偏离理想条件时,制造过程固有的公差会导致位置精度误差。如果编码器在振动下工作,则扫描头的振荡运动将被编码器系统记录为位移,从而将误差引入计数器,从而累加到刻度,系统和安装误差中。行为改善可以基于尝试补偿测量信号处理中的误差的不同技术。在这项工作中,提出了一种新的“临时”方法来补偿编码器在振动影响下工作时的误差。该方法基于对劣化的测量信号的李萨如图形的拟合技术和查找表的使用,结果给出了补偿程序,在该程序中可以获得更高的传感器精度。

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