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Receivers for Faster-than-Nyquist signaling with and without turbo equalization.

, , and . ISIT, page 464-468. IEEE, (2008)

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Bandwidth-Efficient Coded Modulation with Optimized Linear Partial-Response Signals., and . IEEE Trans. Information Theory, 44 (2): 701-713 (1998)A review of faster than Nyquist signaling with an extension to four-level modulation.. ISTC, page 6-10. IEEE, (2016)CDD: a Conserved Domain Database for the functional annotation of proteins., , , , , , , , , and 17 other author(s). Nucleic Acids Research, 39 (Database-Issue): 225-229 (2011)A 3μW 500 kb/s ultra low power analog decoder with digital I/O in 65 nm CMOS., , , and . ICECS, page 349-352. IEEE, (2013)Faster-Than-Nyquist Signaling., , and . Proceedings of the IEEE, 101 (8): 1817-1830 (2013)The effect of symbol rate on constrained capacity for linear modulation., , and . ISIT, page 1093-1097. IEEE, (2008)Analysis of best high rate convolutional codes for faster than Nyquist turbo equalization., and . ISIT, page 1987-1991. IEEE, (2014)Logarithmic Bit-Significance Ratio: Definition, Calculation Rules and Examples., , and . ISIT, page 2869-2873. IEEE, (2006)The two dimensional Mazo limit., and . ISIT, page 970-974. IEEE, (2005)A Robust 9.6 Kb/s Subband Coder Design For The Rayleigh Fading Channel., , and . ICC (3), page 1163-1168. Elsevier, (1984)