Two novel Sigma-Delta modulator algorithms based on discretized suboptimal second order sliding mode concepts for high resolution analog-to-digital conversion purposes are proposed. Let fs be the finite over-sampling frequency of the modulator, novel schemes that convert to a 1-bit signal, resp., the first, or the second time-derivative of the signal to be modulated are suggested to reduce the error of the conversion process, at the demodulation side, to an O(1=f2 s ), instead of O(1=f0:5 s ) of the traditional scheme. The algorithms are discussed and analyzed in the discrete-time setting, and a comparative analysis illustrates the effectiveness of these solutions.
High Accuracy Sigma-Delta Modulator implementations via Suboptimal Quasi-Sliding Mode Control
Alessandro PilloniPrimo
;Mauro FranceschelliSecondo
;Alessandro PisanoPenultimo
;Elio UsaiUltimo
2018-01-01
Abstract
Two novel Sigma-Delta modulator algorithms based on discretized suboptimal second order sliding mode concepts for high resolution analog-to-digital conversion purposes are proposed. Let fs be the finite over-sampling frequency of the modulator, novel schemes that convert to a 1-bit signal, resp., the first, or the second time-derivative of the signal to be modulated are suggested to reduce the error of the conversion process, at the demodulation side, to an O(1=f2 s ), instead of O(1=f0:5 s ) of the traditional scheme. The algorithms are discussed and analyzed in the discrete-time setting, and a comparative analysis illustrates the effectiveness of these solutions.File | Dimensione | Formato | |
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