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Leveraging gain normalization for sub-band temporal features in noise-robust speech recognition., and . FSKD, page 1409-1412. IEEE, (2012)Optimization of Temporal Filters in the Modulation Frequency Domain via Constrained Linear Discriminant Analysis (C-LDA) for Constructing Robust Features in Speech Recognition.. ICASSP (4), page 805-808. IEEE, (2007)Robust Speech Recognition via Enhancing the Complex-Valued Acoustic Spectrum in Modulation Domain., , and . IEEE ACM Trans. Audio Speech Lang. Process., 24 (2): 236-251 (2016)Enhancing the Magnitude Spectrum of Speech Features for Robust Speech Recognition., , and . EURASIP J. Adv. Signal Process., (2012)Subband Feature Statistics Normalization Techniques Based on a Discrete Wavelet Transform for Robust Speech Recognition., and . IEEE Signal Process. Lett., 16 (9): 806-809 (2009)Cepstral Statistics Compensation Using Online Pseudo Stereo Codebooks for Robust Speech Recognition in Additive Noise Environments.. ICASSP (1), page 513-516. IEEE, (2006)Time-Reversal Enhancement Network With Cross-Domain Information for Noise-Robust Speech Recognition., , , and . IEEE Multim., 29 (1): 114-124 (2022)Data-driven temporal filters obtained via different optimization criteria evaluated on Aurora2 database., and . INTERSPEECH, page 441-444. ISCA, (2002)ConSep: a Noise- and Reverberation-Robust Speech Separation Framework by Magnitude Conditioning., , and . CoRR, (2024)Smoothing the acoustic spectral time series of speech signals for noise reduction., , , and . ICCE-TW, page 1-2. IEEE, (2019)