Title :
A PC-Based Wattmeter for Accurate Measurements in Sinusoidal and Distorted Conditions: Setup and Experimental Characterization
Author :
Cataliotti, Antonio ; Cosentino, Valentina ; Cara, Dario Di ; Lipari, Alessandro ; Nuccio, Salvatore ; Spataro, Ciro
Author_Institution :
Dept. of Electr., Electron. & Telecommun. Eng., Univ. di Palermo, Palermo, Italy
fDate :
5/1/2012 12:00:00 AM
Abstract :
This paper presents the development of a high-accuracy sampling wattmeter, which can be employed with both sinusoidal and distorted input signals. The proposed personal computer (PC)-based system is a simple, portable, and low-cost solution because it is based on two commercial data acquisition boards connected to a common PC. Owing to this solution, the voltage is sensed directly, avoiding expensive voltage dividers, while the current is sensed by means of a noninductive current shunt. Commercial software is also used for data processing and implementation of the virtual instrument. The setup of the PC-based wattmeter is described, with a detailed description of the correction strategy of systematic contributions to the measurement uncertainty of analog-to-digital converter conversion. An experimental evaluation of its metrological performances is made by means of several experimental tests, with both sinusoidal and distorted voltages and currents, which were carried out with an electric power standard and a high-performance multifunction calibrator.
Keywords :
analogue-digital conversion; calibration; data acquisition; electric current measurement; electric sensing devices; measurement uncertainty; microcomputers; power measurement; virtual instrumentation; voltage dividers; voltage measurement; wattmeters; PC-based wattmeter; analog-to-digital converter; commercial data acquisition board; commercial software; current sensor; data processing; distorted input signal; distorted voltage; electric power standard; high-accuracy sampling wattmeter; high-performance multifunction calibrator; measurement uncertainty; metrological performance; noninductive current shunt; personal computer-based wattmeter; sinusoidal input signal; sinusoidal voltage; virtual instrument implementation; voltage divider; voltage sensor; Data acquisition; Harmonic analysis; Instruments; Measurement uncertainty; Nickel; Power measurement; Voltage measurement; Data acquisition; harmonic distortion; personal computer (PC)-based instrument; power measurement; power system measurements; wattmeters;
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
DOI :
10.1109/TIM.2011.2178679