双向四传感器旋转编码器测量技术

R. Garmabdari, S. Shafie, M. Isa, Alireza Garmabdari
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引用次数: 2

摘要

流体流量的测量和监测被认为是工业和家庭应用中的关键问题,特别是水的测量。基于不同的物理原理,人们提出了许多方法,如超声波、电磁和差压系统,每种方法都需要自己特定的测量技术和算法来计算必要的信息,如流速、消耗和流向。然而,它们的测量技术存在一些弱点,包括其实现的复杂性和功耗。为此,本文提出了一种基于四传感器旋转编码器的测量技术。测量技术简单,能够测量旋转速度、旋转次数和识别旋转方向。此外,在该测量技术中,系统的误差是可检测的,而传统的旋转编码器系统的调试需要昂贵的设备和较长的时间。对测量技术的功能和性能进行了评价,发现该技术能够准确地测量流速、旋转次数、识别旋转方向和识别发生的误差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Measurement technique for bidirectional four sensor rotary encoder
Measurement and monitoring of fluid flow are considered as crucial issues in industry and domestic applications especially for the water measurement. Numerous approach based on different physical principles have been proposed such as ultrasonic, electromagnetic, and differential pressure systems which each one of them requires its own particular measurement technique and algorithm to compute the necessary information such as flow speed, consumption and flow direction. However, there are some weaknesses in their measurement techniques including complexity and power consumption in their implementation. Therefore, in this paper, a measurement technique based on four sensor rotary encoder is presented. The measurement technique is simple and able to measure the speed, number of rotation and recognize the direction of the rotation. Furthermore, in the proposed measurement technique the error of the system is detectable in which debugging the system is required expensive equipment and long time for the conventional rotary encoder system. The functionality and performance of the measurement technique have been evaluated and found that the proposed technique is able to accurately measure the flow speed, the number of rotation, identify the direction of rotation and recognize the error occurred.
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