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Feiran Yang 0001
Person information
- affiliation: Chinese Academy of Sciences, Institute of Acoustics, State Key Laboratory of Acoustics and the Key Laboratory of Noise and Vibration Research, Beijing, China
Other persons with the same name
- Feiran Yang 0002 — Northeastern University, College of Information Science and Engineering, Shenyang, China
- Feiran Yang 0003 — University of Victoria, Department of Mathematics and Statistics, Canada
- Fei-Ran Yang 0004 (aka: Feiran Yang 0004) — Orion Microelectronics, Realtek Semiconductor Corporation, Irvine, CA, USA (and 2 more)
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2020 – today
- 2024
- [j42]Yang Liu, Sichen Liu, Feiran Yang, Jun Yang:
A Deep Hybrid Model for Stereophonic Acoustic Echo Control. Circuits Syst. Signal Process. 43(12): 8046-8059 (2024) - [j41]Changtao Li, Yi Wan, Feiran Yang, Jun Yang:
Multi-scale Information Aggregation for Spoofing Detection. EURASIP J. Audio Speech Music. Process. 2024(1): 57 (2024) - [j40]Zhengqiang Luo, Ziying Yu, Fang Kang, Feiran Yang, Jun Yang:
Performance analysis of unconstrained partitioned-block frequency-domain adaptive filters in under-modeling scenarios. EURASIP J. Adv. Signal Process. 2024(1): 82 (2024) - [j39]Huaqiang Chen, Weiqiang Tan, Jiajia Guo, Feiran Yang:
SCANet: A lightweight deep learning network for massive MIMO CSI feedback based on spatial and channel attention mechanism. Phys. Commun. 67: 102516 (2024) - [j38]Jinfu Wang, Feiran Yang, Zhaoli Yan, Jun Yang:
Design of frequency-invariant uniform concentric circular arrays with first-order directional microphones. Signal Process. 217: 109330 (2024) - [j37]Changtao Li, Feiran Yang, Jun Yang:
Restoration of Bone-Conducted Speech With U-Net-Like Model and Energy Distance Loss. IEEE Signal Process. Lett. 31: 166-170 (2024) - [j36]Changtao Li, Feiran Yang, Jun Yang:
A Two-Stage Approach to Quality Restoration of Bone-Conducted Speech. IEEE ACM Trans. Audio Speech Lang. Process. 32: 818-829 (2024) - [j35]Taihui Wang, Feiran Yang, Jun Yang:
Multichannel Linear Prediction-Based Speech Dereverberation Considering Sparse and Low-Rank Priors. IEEE ACM Trans. Audio Speech Lang. Process. 32: 1724-1735 (2024) - [j34]Jinfu Wang, Feiran Yang, Xiaoqing Hu, Jun Yang:
Theoretical Analysis of Maclaurin Expansion Based Linear Differential Microphone Arrays and Improved Solutions. IEEE ACM Trans. Audio Speech Lang. Process. 32: 3811-3825 (2024) - [j33]Jinbo Hu, Yin Cao, Ming Wu, Qiuqiang Kong, Feiran Yang, Mark D. Plumbley, Jun Yang:
Selective-Memory Meta-Learning With Environment Representations for Sound Event Localization and Detection. IEEE ACM Trans. Audio Speech Lang. Process. 32: 4313-4327 (2024) - [i5]Jinbo Hu, Yin Cao, Ming Wu, Fang Kang, Feiran Yang, Wenwu Wang, Mark D. Plumbley, Jun Yang:
PSELDNets: Pre-trained Neural Networks on Large-scale Synthetic Datasets for Sound Event Localization and Detection. CoRR abs/2411.06399 (2024) - 2023
- [j32]Jinfu Wang, Feiran Yang, Jun Yang:
A Perspective on Fully Steerable Differential Beamformers for Circular Arrays. IEEE Signal Process. Lett. 30: 648-652 (2023) - [j31]Jinfu Wang, Feiran Yang, Jun Yang:
A General Approach to the Design of the Fractional-Order Superdirective Beamformer. IEEE Trans. Circuits Syst. II Express Briefs 70(11): 4291-4295 (2023) - [c15]Jinfu Wang, Feiran Yang, Jianfeng Guo, Jun Yang:
Robust Adaptation Control for Generalized Sidelobe Canceller with Time-Varying Gaussian Source Model. EUSIPCO 2023: 16-20 - [i4]Jinbo Hu, Yin Cao, Ming Wu, Feiran Yang, Ziying Yu, Wenwu Wang, Mark D. Plumbley, Jun Yang:
META-SELD: Meta-Learning for Fast Adaptation to the new environment in Sound Event Localization and Detection. CoRR abs/2308.08847 (2023) - [i3]Jinbo Hu, Yin Cao, Ming Wu, Qiuqiang Kong, Feiran Yang, Mark D. Plumbley, Jun Yang:
Selective-Memory Meta-Learning with Environment Representations for Sound Event Localization and Detection. CoRR abs/2312.16422 (2023) - 2022
- [j30]Changtao Li, Feiran Yang, Jun Yang:
The Role of Long-Term Dependency in Synthetic Speech Detection. IEEE Signal Process. Lett. 29: 1142-1146 (2022) - [j29]Feiran Yang:
Analysis of Unconstrained Partitioned-Block Frequency-Domain Adaptive Filters. IEEE Signal Process. Lett. 29: 2377-2381 (2022) - [j28]Jinfu Wang, Feiran Yang, Jun Yang:
Insights Into the MMSE-Based Frequency-Invariant Beamformers for Uniform Circular Arrays. IEEE Signal Process. Lett. 29: 2432-2436 (2022) - [j27]Feiran Yang:
Analysis of Deficient-Length Partitioned-Block Frequency-Domain Adaptive Filters. IEEE ACM Trans. Audio Speech Lang. Process. 30: 456-467 (2022) - [j26]Taihui Wang, Feiran Yang, Jun Yang:
Convolutive Transfer Function-Based Multichannel Nonnegative Matrix Factorization for Overdetermined Blind Source Separation. IEEE ACM Trans. Audio Speech Lang. Process. 30: 802-815 (2022) - [c14]Jinbo Hu, Yin Cao, Ming Wu, Qiuqiang Kong, Feiran Yang, Mark D. Plumbley, Jun Yang:
Sound Event Localization and Detection for Real Spatial Sound Scenes: Event-Independent Network and Data Augmentation Chains. DCASE 2022 - [c13]Sichen Liu, Feiran Yang, Fang Kang, Jun Yang:
A Multi-Task Learning Method for Weakly Supervised Sound Event Detection. ICASSP 2022: 8802-8806 - [c12]Jinbo Hu, Yin Cao, Ming Wu, Qiuqiang Kong, Feiran Yang, Mark D. Plumbley, Jun Yang:
A Track-Wise Ensemble Event Independent Network for Polyphonic Sound Event Localization and Detection. ICASSP 2022: 9196-9200 - [i2]Jinbo Hu, Yin Cao, Ming Wu, Qiuqiang Kong, Feiran Yang, Mark D. Plumbley, Jun Yang:
A Track-Wise Ensemble Event Independent Network for Polyphonic Sound Event Localization and Detection. CoRR abs/2203.10228 (2022) - [i1]Jinbo Hu, Yin Cao, Ming Wu, Qiuqiang Kong, Feiran Yang, Mark D. Plumbley, Jun Yang:
Sound Event Localization and Detection for Real Spatial Sound Scenes: Event-Independent Network and Data Augmentation Chains. CoRR abs/2209.01802 (2022) - 2021
- [j25]Feiran Yang, Gerald Enzner, Jun Yang:
New Insights into Convergence Theory of Constrained Frequency-Domain Adaptive Filters. Circuits Syst. Signal Process. 40(4): 2076-2090 (2021) - [j24]Sichen Liu, Feiran Yang, Yin Cao, Jun Yang:
Frequency-dependent auto-pooling function for weakly supervised sound event detection. EURASIP J. Audio Speech Music. Process. 2021(1): 19 (2021) - [j23]Feiran Yang, Gerald Enzner, Jun Yang:
On the Convergence Behavior of Partitioned-Block Frequency-Domain Adaptive Filters. IEEE Trans. Signal Process. 69: 4906-4920 (2021) - [c11]Rui Zhu, Feiran Yang, Yuepeng Li, Shidong Shang:
A Partitioned-Block Frequency-Domain Adaptive Kalman Filter for Stereophonic Acoustic Echo Cancellation. Interspeech 2021: 1837-1841 - [c10]Taihui Wang, Feiran Yang, Rui Zhu, Jun Yang:
Real-Time Independent Vector Analysis Using Semi-Supervised Nonnegative Matrix Factorization as a Source Model. Interspeech 2021: 1842-1846 - [c9]Fang Kang, Feiran Yang, Jun Yang:
Real-Time Independent Vector Analysis with a Deep-Learning-Based Source Model. SLT 2021: 665-669 - 2020
- [j22]Jianfeng Guo, Feiran Yang, Jun Yang:
Mean-Square Performance of the Modified Filtered-x Affine Projection Algorithm. Circuits Syst. Signal Process. 39(8): 4243-4257 (2020) - [j21]Jianfeng Guo, Feiran Yang, Jun Yang:
Convergence analysis of the conventional filtered-x affine projection algorithm for active noise control. Signal Process. 170: 107437 (2020) - [j20]Zhenhai Yan, Feiran Yang, Jun Yang:
Optimum step-size control for a variable step-size stereo acoustic echo canceller in the frequency domain. Speech Commun. 124: 21-27 (2020) - [j19]Feiran Yang, Jianfeng Guo, Jun Yang:
Stochastic Analysis of the Filtered-x LMS Algorithm for Active Noise Control. IEEE ACM Trans. Audio Speech Lang. Process. 28: 2252-2266 (2020)
2010 – 2019
- 2019
- [j18]Yuanlei Qi, Feiran Yang, Ming Wu, Jun Yang:
A Broadband Kalman Filtering Approach to Blind Multichannel Identification. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 102-A(6): 788-795 (2019) - [j17]Feiran Yang, Jun Yang:
Mean-square performance of the modified frequency-domain block LMS algorithm. Signal Process. 163: 18-25 (2019) - [j16]Fang Kang, Feiran Yang, Jun Yang:
A low-complexity permutation alignment method for frequency-domain blind source separation. Speech Commun. 115: 88-94 (2019) - [j15]Feiran Yang, Jun Yang:
Convergence Analysis of Deficient-Length Frequency-Domain Adaptive Filters. IEEE Trans. Circuits Syst. I Regul. Pap. 66-I(11): 4242-4255 (2019) - [j14]Feiran Yang, Gerald Enzner, Jun Yang:
A Unified Approach to the Statistical Convergence Analysis of Frequency-Domain Adaptive Filters. IEEE Trans. Signal Process. 67(7): 1785-1796 (2019) - [c8]Feiran Yang, Jun Yang, Felix Albu:
An Alternative Solution to the Dynamically Regularized RLS Algorithm. APSIPA 2019: 1072-1075 - [c7]Yuanlei Qi, Feiran Yang, Jun Yang:
A Late Reverberation Power Spectral Density Aware Approach to Speech Dereverberation Based on Deep Neural Networks. APSIPA 2019: 1700-1703 - [c6]Feiran Yang, Gerald Enzner, Jun Yang:
Transient Analysis of Partitioned-Block Frequency-Domain Adaptive Filters. EUSIPCO 2019: 1-5 - 2018
- [j13]Feiran Yang, Jun Yang:
A comparative survey of fast affine projection algorithms. Digit. Signal Process. 83: 297-322 (2018) - [j12]Feiran Yang, Jun Yang:
Multiband-structured Kalman filter. IET Signal Process. 12(6): 722-728 (2018) - [j11]Feiran Yang, Jun Yang:
Optimal Step-Size Control of the Partitioned Block Frequency-Domain Adaptive Filter. IEEE Trans. Circuits Syst. II Express Briefs 65-II(6): 814-818 (2018) - [c5]Dingding Yao, Junfeng Li, Risheng Xia, Feiran Yang:
A Parametric Method for Elevation Control. IWAENC 2018: 181-185 - [c4]Jianfeng Guo, Feiran Yang, Gerald Enzner, Jun Yang:
Tracking Analysis and Improvement of Broadband Kalman Filter Using the Two-Echo-Path Model as a Rapid Tunnel. IWAENC 2018: 341-345 - 2017
- [j10]Feiran Yang, Gerald Enzner, Jun Yang:
Frequency-Domain Adaptive Kalman Filter With Fast Recovery of Abrupt Echo-Path Changes. IEEE Signal Process. Lett. 24(12): 1778-1782 (2017) - [j9]Feiran Yang, Gerald Enzner, Jun Yang:
Statistical Convergence Analysis for Optimal Control of DFT-Domain Adaptive Echo Canceler. IEEE ACM Trans. Audio Speech Lang. Process. 25(5): 1095-1106 (2017) - [c3]Caixia Lu, Feiran Yang, Jun Yang:
A frequency-domain adaptive feedback cancellation algorithm based on convex combination. APSIPA 2017: 474-477 - [c2]Feiran Yang, Jun Yang:
A fast affine projection algorithm based on a modified Toeplitz matrix. APSIPA 2017: 1378-1381 - 2016
- [j8]Rui Zhu, Feiran Yang, Jun Yang:
A gradient-adaptive lattice-based complex adaptive notch filter. EURASIP J. Adv. Signal Process. 2016: 79 (2016) - [j7]Rui Zhu, Feiran Yang, Jun Yang:
An RLS-Based Lattice-Form Complex Adaptive Notch Filter. IEEE Signal Process. Lett. 23(2): 217-221 (2016) - 2015
- [j6]Feiran Yang, Ming Wu, Peifeng Ji, Zheng Kuang, Jun Yang:
Transient and steady-state analyses of the improved multiband-structured subband adaptive filter algorithm. IET Signal Process. 9(8): 596-604 (2015) - [j5]Feiran Yang, Ming Wu, Peifeng Ji, Jun Yang:
Low-Complexity Implementation of the Improved Multiband-Structured Subband Adaptive Filter Algorithm. IEEE Trans. Signal Process. 63(19): 5133-5148 (2015) - [c1]Feiran Yang, Jun Yang:
Fast implementation of a family of memory proportionate affine projection algorithm. ICASSP 2015: 3507-3511 - 2014
- [j4]Feiran Yang, Ming Wu, Jun Yang, Zheng Kuang:
A fast exact filtering approach to a family of affine projection-type algorithms. Signal Process. 101: 1-10 (2014) - 2013
- [j3]Feiran Yang, Ming Wu, Jun Yang:
A Computationally Efficient Delayless Frequency-Domain Adaptive Filter Algorithm. IEEE Trans. Circuits Syst. II Express Briefs 60-II(4): 222-226 (2013) - 2012
- [j2]Feiran Yang, Ming Wu, Jun Yang:
Stereophonic Acoustic Echo Suppression Based on Wiener Filter in the Short-Time Fourier Transform Domain. IEEE Signal Process. Lett. 19(4): 227-230 (2012) - [j1]Feiran Yang, Ming Wu, Peifeng Ji, Jun Yang:
An Improved Multiband-Structured Subband Adaptive Filter Algorithm. IEEE Signal Process. Lett. 19(10): 647-650 (2012)
Coauthor Index
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