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A New Method for Angular Speed Measurement with Absolute Encoder

机译:绝对编码器角度速度测量的一种新方法

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摘要

The encoders are electromechanical devices that give information about the angular position and the number of turns of the shaft, which they are connected. These devices are divided into digital or analogue according to output types. On digital outputs, the output can be binary coded, gray coded or pulsed. The frequency (M) or period (T) method produces accurate results in pulse-output encoders. However, these methods alone cannot give accurate results in some encoder types, which are saw tooth type encoders that produce analogue outputs in different shapes. In this study, a new method was proposed, which reduces the relative error ratio too much below 1 % in an absolute encoder that produces an analogue output ranging from 0 V to 5 V according to the angular position of the shaft. Unlike in the studies in the literature, M method and Analog Digital Converter (ADC) were used together. Thanks to this proposed method (M + ADC), it is possible to increase the measurement accuracy of the encoders with analogue output in all speed regions.
机译:编码器是机电装置,其提供有关它们所连接的角度位置和轴的匝数的信息。根据输出类型,这些设备分为数字或模拟。在数字输出上,输出可以是二进制编码的,灰色编码或脉冲。频率(m)或周期(t)方法在脉冲输出编码器中产生准确的结果。然而,仅这些方法不能在某些编码器类型中提供准确的结果,这些类型是锯齿型编码器,其产生不同形状的模拟输出。在该研究中,提出了一种新方法,该方法在绝对编码器中将相对误差比降低到低于1%的绝对编码器,其根据轴的角位置产生从0V至5V的模拟输出。与文献中的研究不同,M方法和模拟数字转换器(ADC)一起使用。由于这种提出的方​​法(M + ADC),可以在所有速度区域中增加具有模拟输出的编码器的测量精度。

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