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An efficient 18-band quasi-ANSI 1/3-octave filter bank using re-sampling method for digital hearing aids.

, , and . ICASSP, page 2639-2643. IEEE, (2014)

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10-ms 18-Band Quasi-ANSI S1.11 1/3-Octave Filter Bank for Digital Hearing Aids., , , and . IEEE Trans. on Circuits and Systems, 60-I (3): 638-649 (2013)A Systolic Array Implementation of the Feng-Rao Algorithm., , and . IEEE Trans. Computers, 48 (7): 690-706 (1999)An efficient 18-band quasi-ANSI 1/3-octave filter bank using re-sampling method for digital hearing aids., , and . ICASSP, page 2639-2643. IEEE, (2014)Self-Compensation Technique for Simplified Belief-Propagation Algorithm., , , and . IEEE Trans. Signal Processing, 55 (6-2): 3061-3072 (2007)A Low-Error, Cost-Efficient Design Procedure for Evaluating Logarithms to Be Used in a Logarithmic Arithmetic Processor., , , , and . IEEE Trans. Computers, 65 (4): 1158-1164 (2016)Complexity-effective dynamic range compression for digital hearing aids., , , and . ISCAS, page 2378-2381. IEEE, (2010)A View of Gaussian Elimination Applied to Early Stopped Berklekamp-Massey Algorithm., and . IEEE Trans. Communications, 55 (5): 1089-1089 (2007)Design and Implementation of a High-Performance and Complexity-Effective VLIW DSP for Multimedia Applications., , , , and . Signal Processing Systems, 51 (3): 209-223 (2008)A low power hearing aid computing platform using lightweight processing elements., , , and . ISCAS, page 2785-2788. IEEE, (2012)A smart stream controller for efficient implementation of streaming applications on the heterogeneous multicore processor., , , and . ISCAS, page 1335-1338. IEEE, (2012)