Title :
Direct projection decoding algorithm for sigma-delta modulated signals
Author :
Wiemer, Ingo ; Schwarz, Wolfgang
Author_Institution :
Fac. of Electr. Eng., Dresden Univ. of Technol., Germany
fDate :
5/1/2005 12:00:00 AM
Abstract :
Usually, sigma-delta modulators (ΣΔM) are modeled by replacing the quantizer with an additive white noise source. Based on this linear model, linear decoder structures can be designed. However, the ΣΔM is a nonlinear system, and corresponding nonlinear decoder structures may be able to achieve a better signal-to-quantization-noise ratio (SQNR) performance. In this paper, a new nonlinear decoding algorithm is presented. It is based on the projection onto complex sets (POCS) algorithm developed by Hein and Zakhor. Our algorithm reduces the decoding problem to the solution of a single quadratic programming problem based on the state equations of the modulator and the condition that the modulator input signal is bandlimited. The bandlimitation constraint is directly applied to the state equations. Thus, the resulting quadratic programming problem needs to be solved only once.
Keywords :
AWGN; iterative decoding; linear codes; nonlinear codes; quadratic programming; quantisation (signal); sigma-delta modulation; additive white noise source; analog-digital conversion; bandlimited signal; direct projection decoding algorithm; iterative algorithm; linear decoder structure; low-pass filtering; nonlinear decoding algorithm; nonlinear system; optimization; projection onto complex sets algorithm; quadratic programming; sigma-delta modulated signal; signal reconstruction; signal-to-quantization-noise ratio; state equation; Decoding; Delta-sigma modulation; Modulation coding; Noise shaping; Nonlinear equations; Nonlinear systems; Projection algorithms; Quadratic programming; Signal generators; Signal processing algorithms; Analog-digital conversion; decoding; nonlinear systems; sigma-delta modulation; signal reconstruction;
Journal_Title :
Signal Processing, IEEE Transactions on
DOI :
10.1109/TSP.2005.845472