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Turbo Product Code Decoder Without Interleaving Resource: From Parallelism Exploration to High Efficiency Architecture.

, , , , and . J. Signal Process. Syst., 64 (1): 17-29 (2011)

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Multi-User Digital Beamforming Based on Path Angle Information for mm-Wave MIMO Systems., , , , and . WSA, page 1-6. VDE Verlag / IEEE, (2020)Analysis of the Convergence Process by EXIT Charts for Parallel Implementations of Turbo Decoders., , and . IEEE Communications Letters, 17 (7): 1427-1430 (2013)Application of the error impulse method in the design of high-order turbo coded modulation., , , and . ITW, page 41-44. IEEE, (2002)A Flexible Architecture For Block Turbo Decoders Using BCH Or Reed-Solomon Components Codes., , , and . ISVLSI, page 430-431. IEEE Computer Society, (2006)Computing the minimum distance of linear codes by the error impulse method., , , and . GLOBECOM, page 1017-1020. IEEE, (2002)On the higher efficiency of parallel Reed-Solomon turbo-decoding., , , and . ICECS, page 1308-1311. IEEE, (2008)Compensating the high power amplifier nonlinearity for a DVB-S2 system., , , and . NEWCAS, page 441-444. IEEE, (2012)A Dedicated Approach to Explore Design Space for Hardware Architecture of Turbo Decoders., , , , , , and . SiPS, page 288-293. IEEE, (2012)Design, Implementation and Prototyping of a Flexible Architecture Dedicated to Block Turbo Decoding., , , and . ReCoSoC, page 152-159. Univ. Montpellier II, (2006)Semi-iterative analog turbo decoding., , , and . ISCAS, IEEE, (2006)