Title :
An all-analog ring network for turbo-detection of convolutionally encoded DPSK signals
Author :
Hagenauer, Joachim ; Schaefer, Andrew ; Weiss, Christian
Author_Institution :
Inst. for Commun. Eng., Munich Univ. Tech., Germany
Abstract :
The turbo-principle is more far reaching than the original turbo code concept. Encoded DPSK transmission, e.g., can be viewed as a serial concatenation of a channel code with a rate-one code representing the DPSK modulation. Iterative decoding of this concatenated scheme shows surprisingly good performance. We describe the serial concatenation of interleaved tail-biting convolutional codes (TBCC) with this DPSK rate-one code transmitted over AWGN and flat Rayleigh fading channels. The receiver performs time-continuous “turbo” iterations between the inner and outer codes and is realized by two analog ring networks connected via an interleaver ring which exchanges extrinsic information by means of analog signals being continuous in time and value
Keywords :
AWGN channels; Rayleigh channels; VLSI; analogue integrated circuits; channel coding; concatenated codes; convolutional codes; differential phase shift keying; interleaved codes; iterative decoding; modulation coding; signal detection; turbo codes; AWGN channel; DPSK rate-one code; all-analog ring network; analog VLSI; analog signals; channel code; convolutionally encoded DPSK signals; encoded DPSK transmission; flat Rayleigh fading channel; inner code; interleaved tail-biting convolutional codes; iterative decoding; outer code; receiver; serial concatenation; time-continuous turbo iterations; turbo code; turbo-detection; Analog circuits; Communications technology; Concatenated codes; Convolution; Convolutional codes; Differential quadrature phase shift keying; Iterative decoding; Turbo codes; USA Councils; Very large scale integration;
Conference_Titel :
Information Theory, 2000. Proceedings. IEEE International Symposium on
Conference_Location :
Sorrento
Print_ISBN :
0-7803-5857-0
DOI :
10.1109/ISIT.2000.866720