This paper describes an efficient implementation of a power supply meter. The implementation is based on the Fourier Series decomposition algorithm, using CORDIC algorithm for complex mathematical computations. It is able to calculate RMS and peak values, phase shift, power factor, and complex, active, and reactive power for two periodic waveforms up to the 25th harmonic. Several implementation alternatives are compared pointing out the advantages and the disadvantages of each one. Then the circuit structure at block level is described with emphasis on the advantages resulted from the use of CORDIC algorithm, followed by some considerations over precision issues.
A high precision power supply meter / Lazarescu, MIHAI TEODOR; Sartori, M.. - ELETTRONICO. - (1996). (Intervento presentato al convegno Mixed Design of Integrated Circuits and Systems (MIXDES 96) tenutosi a Lodz, Poland nel 30 Maggio - 1 Giugno 1996).
A high precision power supply meter
LAZARESCU, MIHAI TEODOR;
1996
Abstract
This paper describes an efficient implementation of a power supply meter. The implementation is based on the Fourier Series decomposition algorithm, using CORDIC algorithm for complex mathematical computations. It is able to calculate RMS and peak values, phase shift, power factor, and complex, active, and reactive power for two periodic waveforms up to the 25th harmonic. Several implementation alternatives are compared pointing out the advantages and the disadvantages of each one. Then the circuit structure at block level is described with emphasis on the advantages resulted from the use of CORDIC algorithm, followed by some considerations over precision issues.File | Dimensione | Formato | |
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https://hdl.handle.net/11583/2507489
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