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A novel feedforward active noise control structure with spectrum-tuning for residual noise.

, and . IEEE Trans. Consumer Electronics, 56 (4): 2093-2097 (2010)

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Real-time Smartphone application for improving spatial awareness of Hearing Assistive Devices., , and . EMBC, page 433-436. IEEE, (2018)Active Optical Lattice Filters., , , , , , and . EURASIP J. Adv. Signal Process., 2005 (10): 1452-1461 (2005)Blind identification of multi-channel systems with single input and unknown orders., and . Signal Process., 89 (7): 1288-1310 (2009)Improved Parallel Feedback Active noise control using linear prediction for adaptive noise decomposition., , and . ICASSP, page 664-668. IEEE, (2015)Parallel feedback Active Noise Control of MRI acoustic noise with signal decomposition using hybrid RLS-NLMS adaptive algorithms., , and . EMBC, page 3220-3223. IEEE, (2014)Two-stage data-driven single channel speech enhancement with cepstral analysis pre-processing., , , and . GlobalSIP, page 702-706. IEEE, (2015)Implementation of a real-time feedback active noise control system to cancel noise within a 3-dimensional enclosure., and . ISPA, page 651-654. IEEE, (2013)Robust real-time sound pressure level stabilizer for multi-channel hearing aids compression for dynamically changing acoustic environment., , , and . ACSSC, page 1952-1955. IEEE, (2017)A new structure with spectrum-tuning of residual noise for active noise control., and . ICASSP, page 413-416. IEEE, (2011)Compression Fitting of Hearing Aids and Implementation., and . EMBC, page 968-971. IEEE, (2020)