Title :
The digital measurement of low values of angular velocity and acceleration
Author :
Hancke, Gerhard P. ; Viljoen, Chris F T
Author_Institution :
Dept. of Electr. Eng., Pretoria Univ., South Africa
Abstract :
An algorithm and the microprocessor implementation thereof for the measurement of angular velocity and acceleration of rotating machinery are presented. The speed reference signal is derived from a pulse train at a frequency of only one pulse per revolution. This fact places severe constraints on the resolution and measuring time of the instrument. To detect a rate of change of speed of 1 r.p.m./min, a measuring time of at least 1 min is required. Over a 30-s measuring period it is possible to detect a rate of only 4 r.p.m./min. The resolution, therefore, is dependent on the measuring time, and a fixed relationship exists between these two parameters. The values obtained for either velocity or acceleration/deceleration will be average values for the measuring period. The instrument has been implemented using standard microprocessor components and supporting circuitry. The results obtained so far are highly satisfactory
Keywords :
acceleration measurement; angular velocity measurement; computerised instrumentation; digital instrumentation; electric machines; microcomputer applications; acceleration measurement; acceleration/deceleration; digital measurement; measurement of angular velocity; microprocessor; power generation; pulse train; rotating machinery; speed reference signal; Acceleration; Accelerometers; Angular velocity; Frequency; Instruments; Machinery; Microprocessors; Rotation measurement; Time measurement; Velocity measurement;
Conference_Titel :
Instrumentation and Measurement Technology Conference, 1990. IMTC-90. Conference Record., 7th IEEE
Conference_Location :
San Jose, CA
DOI :
10.1109/IMTC.1990.65965