Title :
Complexity based design for iterative joint equalization and decoding
Author :
Vishwanath, Sriram ; Mansour, Mohammad ; Bahai, Ahmad
Author_Institution :
Stanford Univ., CA, USA
fDate :
6/24/1905 12:00:00 AM
Abstract :
We motivate the need for a complexity based design for performing joint iterative equalization and decoding. This joint iterative process, which requires the exchange of soft information, incurs a huge complexity increase over hard-decision based algorithms. We introduce complexity as a design parameter and provide two different methodologies. The first approach is a combination of SOVA (soft output Viterbi algorithm) and DFSE (decision feedback sequence estimation), and is called soft-output DFSE (SO-DFSE). The second approach, called soft-decision DFSE (SD-DFSE) generalizes the notion of reliability to soft-decisions through the use of appropriately chosen functions. By varying the design parameters in both approaches, the module can range from being as simple as a soft output DFE to being as complex as a SOVA or APP (a posteriori probability). We conclude by presenting performance curves of iterative algorithms that utilize these modules.
Keywords :
communication complexity; decision feedback equalisers; intersymbol interference; iterative decoding; probability; sequential estimation; ISI; a posteriori probability; complexity based design; decision feedback sequence estimation; intersymbol interference; iterative decoding; iterative equalization; soft output Viterbi algorithm; Computational complexity; Convolutional codes; Decision feedback equalizers; Delay; Downlink; Energy consumption; Iterative algorithms; Iterative decoding; Iterative methods; Viterbi algorithm;
Conference_Titel :
Vehicular Technology Conference, 2002. VTC Spring 2002. IEEE 55th
Print_ISBN :
0-7803-7484-3
DOI :
10.1109/VTC.2002.1002910