Title :
Modulation Diversity in Fading Channels with a Quantized Receiver
Author :
Mohammed, Saif Khan ; Viterbo, Emanuele ; Hong, Yi ; Chockalingam, Ananthanarayanan
Author_Institution :
Dept. of Electr. Eng. (ISY), Linkoping Univ., Linkoping, Sweden
fDate :
1/1/2012 12:00:00 AM
Abstract :
In this paper, we address the design of codes which achieve modulation diversity in block fading single-input single-output (SISO) channels with signal quantization at the receiver. With an unquantized receiver, coding based on algebraic rotations is known to achieve maximum modulation coding diversity. On the other hand, with a quantized receiver, algebraic rotations may not guarantee gains in diversity. Through analysis, we propose specific rotations which result in the codewords having equidistant component-wise projections. We show that the proposed coding scheme achieves maximum modulation diversity with a low-complexity minimum distance decoder and perfect channel knowledge. Relaxing the perfect channel knowledge assumption we propose a novel channel training/estimation technique to estimate the channel. We show that our coding/training/estimation scheme and minimum distance decoding achieves an error probability performance similar to that achieved with perfect channel knowledge.
Keywords :
algebraic codes; channel coding; channel estimation; communication complexity; decoding; diversity reception; error statistics; fading channels; modulation coding; quantisation (signal); radio receivers; SISO channel; algebraic rotations; block fading single-input single-output channel; channel estimation technique; channel training technique; code design; equidistant component-wise projections; error probability; low-complexity minimum distance decoder; maximum modulation coding diversity; perfect channel knowledge assumption; quantized receiver; signal quantization; Channel estimation; Decoding; Fading; Modulation; Quantization; Receivers; Vectors; Modulation diversity; fading; quantization;
Journal_Title :
Wireless Communications, IEEE Transactions on
DOI :
10.1109/TWC.2011.111211.110630