AE-P2: Room Acoustics and Hearing Aids |
| Session Type: Poster |
| Time: Wednesday, March 17, 13:30 - 15:30 |
| Location: Poster Area C |
| Session Chair: Patrick Naylor, Imperial College London |
| AE-P2.1: ESTIMATING DIRECT-TO-REVERBERANT ENERGY RATIO BASED ON SPATIAL CORRELATION MODEL SEGREGATING DIRECT SOUND AND REVERBERATION |
| Yusuke Hioka; NTT Corporation |
| Kenta Niwa; NTT Corporation |
| Sumitaka Sakauchi; NTT Corporation |
| Ken'ichi Furuya; NTT Corporation |
| Yoichi Haneda; NTT Corporation |
| AE-P2.2: ESTIMATION OF REFLECTIVE SURFACES FROM CONTINUOUS SIGNALS |
| Sakari Tervo; Helsinki University of Technology |
| Teemu Korhonen; Tampere University of Technology |
| AE-P2.3: L1-REGULARIZED ROOM MODELING WITH COMPACT MICROPHONE ARRAYS |
| Demba Ba; Massachusetts Institute of Technology |
| Flavio Ribeiro; University of Sao Paulo |
| Cha Zhang; Microsoft Research |
| Dinei Florencio; Microsoft Research |
| AE-P2.4: REVERBERATION FEATURES IDENTIFICATION FROM MUSIC RECORDINGS USING THE DISCRETE WAVELET TRANSFORM |
| Gang Ren; University of Rochester |
| Mark Bocko; University of Rochester |
| Dave Headlam; University of Rochester |
| AE-P2.5: DATABASE OF OMNIDIRECTIONAL AND B-FORMAT ROOM IMPULSE RESPONSES |
| Rebecca Stewart; Queen Mary University of London |
| Mark Sandler; Queen Mary University of London |
| AE-P2.6: HRTF DATABASE AT FIU DSP LAB |
| Navarun Gupta; University of Bridgeport |
| Armando Barreto; Florida International University |
| Manan Joshi; University of Bridgeport |
| Juan Carlos Agudelo; Wells Fargo & Company |
| AE-P2.7: IMPROVING ADAPTIVE FEEDBACK CANCELLATION IN DIGITAL HEARING AIDS THROUGH OFFENDING FREQUENCY SUPPRESSION |
| Ashutosh Pandey; University of Utah |
| V. John Mathews; University of Utah |
| AE-P2.8: ADAPTIVE FEEDBACK CANCELLATION IN HEARING AIDS USING THE IPLS ALGORITHM |
| Randall Plate; University of Minnesota |
| Yongchao Wang; University of Minnesota |
| Zhi-Quan Luo; University of Minnesota |
| Chris Gao; Intricon, Inc. |
| AE-P2.9: ADAPTIVE FEEDBACK CANCELLATION IN HEARING AIDS USING A SINUSOIDAL NEAR-END SIGNAL MODEL |
| Kim Ngo; Katholieke Universiteit Leuven |
| Toon van Waterschoot; Katholieke Universiteit Leuven |
| Mads Græsbøll Christensen; Aalborg University |
| Marc Moonen; Katholieke Universiteit Leuven |
| Søren Holdt Jensen; Aalborg University |
| Jan Wouters; Katholieke Universiteit Leuven |
| AE-P2.10: EVALUATION OF SOUND CLASSIFICATION ALGORITHMS FOR HEARING AID APPLICATIONS |
| JuanJuan Xiang; Starkey Laboratories |
| Martin F. McKinney; Starkey Laboratories |
| Kelly Fitz; Starkey Laboratories |
| Tao Zhang; Starkey Laboratories |
| AE-P2.11: PERFORMANCE OF SINUSOIDAL MODEL BASED AMPLITUDE COMPRESSION IN FLUCTUATING NOISE |
| Janet C. Rutledge; University of Maryland, Baltimore County |
| Peggy B. Nelson; University of Minnesota |
| Juan Carlos Tejero-Calado; University of Malaga |
| Jonathan K. Chang; University of Maryland, Baltimore County |
| Russell R. Williams, II; University of Maryland, Baltimore County |
| AE-P2.12: A HIGHER-ORDER SPECTRO-TEMPORAL INTEGRATION MODEL FOR PREDICTING SIGNAL AUDIBILITY |
| Qing Yang; University of Florida |
| John Harris; University of Florida |
| AE-P2.13: A COMPARISON OF NONSTAGGERED COMPACT FDTD SCHEMES FOR THE 3D WAVE EQUATION |
| Konrad Kowalczyk; University of Erlangen-Nuremberg |
| Maarten van Walstijn; Queen's University Belfast |