Analysis on Errors Generation in Torsional Angle Measurement of Marine Shaft by Phase Difference Method
Yang, K.
Yan, X.
Zhou, X.
Zheng, X.
Liao, S.
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How to Cite

Yang K., Yan X., Zhou X., Zheng X., Liao S., 2013, Analysis on Errors Generation in Torsional Angle Measurement of Marine Shaft by Phase Difference Method, Chemical Engineering Transactions, 33, 793-798.
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Abstract

The method based on phase difference for shaft power measurement is used widely and supposed to be more accurate than traditional methods, like by strain gauge. There are some potential errors which probably have great influence to experiment result when the torque of shaft is calculated according to torsional angle between two coding wheels. The sources of error are researched and analysed in four aspects. The first one is from the quantification error in FPGA (Field Programmable Gate Array), which is caused by the counter’s frequency. Lower counter frequency may leads to bigger error. The research in this problem is to find out a quantification frequency that is accurate enough but won’t increase too much the amount of data. The second one is temperature drift in sensor. It is generated by the variation of environment temperature. The influence of temperature is universal in application. The error tolerance and treatment of temperature drift are discussed in the research work. The third and fourth error sources in measurement are decentred error and perpendicularity error. Both of them are the result of inexactitude installation of coding wheels on shaft. All the sources of error discussed may introduce a lot of uncertainty to the continuous torque and power monitoring. So the tolerances of the potential errors and the extent of improvement are discussed after the analysis of error sources. The research work will help the engineers to understand the processing of error generation and prevent unnecessary problems in monitoring of shaft torque and power, especially the error that may result in the missing of important signals for fault diagnosis.
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