DocumentCode
2509127
Title
An element rotation algorithm for multi-bit DAC nonlinearities in complex bandpass ΔΣAD modulators
Author
San, Hao ; Kobayashi, Haruo ; Kawakami, Shinya ; Kuroiwa, Nobuyuki
Author_Institution
Dept. of Electron. Eng., Gunma Univ., Japan
fYear
2004
fDate
2004
Firstpage
151
Lastpage
156
Abstract
This paper presents a technique for improving the resolution of complex bandpass ΔΣADCs which are used for wireless communication systems. Oversampling and noise-shaping are used to achieve high accuracy of a ΔΣAD modulator. However when a multi-bit DAC is used inside a modulator, nonlinearities of the DAC are not noise-shaped and the SNR of the ΔΣADC degrades. For the conversion of complex intermediate frequency (IF) input signals, a complex bandpass ΔΣAD modulator can provide superior performance to a pair of real bandpass ΔΣAD modulators of the same order. This paper proposes a new noise-shaping algorithm-implemented by adding simple digital circuitry-to reduce the effects of nonlinearities in multi-bit DACs of complex bandpass ΔΣAD modulators. We have performed simulation with MATLAB to verify the effectiveness of the algorithm, and the results show that the proposed algorithm can improve the SNR of a complex bandpass ΔΣADC with nonlinear internal multi-bit DACs.
Keywords
band-pass filters; delta-sigma modulation; digital simulation; signal sampling; ADC; MATLAB; SNR; analogue-digital conversion; complex bandpass ΔΣAD modulators; complex intermediate frequency; digital circuitry; digital-analogue conversion; element rotation algorithm; multibit DAC nonlinearities; noise shaping; signal to noise ratio; wireless communication systems; Circuit simulation; Degradation; Delta modulation; Frequency conversion; MATLAB; Noise shaping; Signal processing algorithms; Stability; Storage area networks; Wireless communication;
fLanguage
English
Publisher
ieee
Conference_Titel
VLSI Design, 2004. Proceedings. 17th International Conference on
Print_ISBN
0-7695-2072-3
Type
conf
DOI
10.1109/ICVD.2004.1260917
Filename
1260917
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