default search action
Ruqiang Yan 0001
Person information
- unicode name: 严如强
- affiliation: Xi'an Jiaotong University, School of Mechanical Engineering, Xi'an, China
- affiliation: Southeast University, School of Instrument Science and Engineering, Nanjing, China
- affiliation: Case Western Reserve University, Department of Mechanical and Aerospace Engineering, Cleveland, OH, USA
- affiliation (PhD 2007): University of Massachusetts Amherst, MA, USA
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [j143]Zeqi Wei, Zhibin Zhao, Zheng Zhou, Ruqiang Yan:
Collaborative-sequential optimization for aero-engine maintenance based on multi-agent reinforcement learning. Expert Syst. Appl. 247: 123358 (2024) - [j142]Jiaxin Ren, Jingcheng Wen, Zhibin Zhao, Ruqiang Yan, Xuefeng Chen, Asoke K. Nandi:
Uncertainty-Aware Deep Learning: A Promising Tool for Trustworthy Fault Diagnosis. IEEE CAA J. Autom. Sinica 11(6): 1317-1330 (2024) - [j141]Guokang Zheng, Yasong Li, Zheng Zhou, Ruqiang Yan:
A Remaining Useful Life Prediction Method of Rolling Bearings Based on Deep Reinforcement Learning. IEEE Internet Things J. 11(13): 22938-22949 (2024) - [j140]Jiafeng Tang, Zhibin Zhao, Yanjie Guo, Chenxi Wang, Xingwu Zhang, Ruqiang Yan, Xuefeng Chen:
Privacy-preserving federated transfer learning for defect identification from highly imbalanced image data in additive manufacturing. Robotics Comput. Integr. Manuf. 89: 102779 (2024) - [j139]Qixiang Zhu, Zheng Zhou, Yasong Li, Ruqiang Yan:
Contrastive BiLSTM-enabled Health Representation Learning for Remaining Useful Life Prediction. Reliab. Eng. Syst. Saf. 249: 110210 (2024) - [j138]Xuezhen Liu, Yongyi Chen, Dan Zhang, Ruqiang Yan, Hongjie Ni:
A Multichannel Long-Term External Attention Network for Aeroengine Remaining Useful Life Prediction. IEEE Trans. Artif. Intell. 5(10): 5130-5140 (2024) - [j137]Tianfu Li, Chuang Sun, Olga Fink, Yuangui Yang, Xuefeng Chen, Ruqiang Yan:
Filter-Informed Spectral Graph Wavelet Networks for Multiscale Feature Extraction and Intelligent Fault Diagnosis. IEEE Trans. Cybern. 54(1): 506-518 (2024) - [j136]Jiahui Cao, Zhibo Yang, Xuefeng Chen, Ruqiang Yan:
From Pseudo to Real: Generalized Subspace Method for Power Spectrum Reconstruction. IEEE Trans. Ind. Electron. 71(4): 4141-4150 (2024) - [j135]Yadong Xu, Ke Feng, Xiaoan Yan, Xin Sheng, Beibei Sun, Zheng Liu, Ruqiang Yan:
Cross-Modal Fusion Convolutional Neural Networks With Online Soft-Label Training Strategy for Mechanical Fault Diagnosis. IEEE Trans. Ind. Informatics 20(1): 73-84 (2024) - [j134]Wenjun Sun, Ruqiang Yan, Ruibing Jin, Rui Zhao, Zhenghua Chen:
FedAlign: Federated Model Alignment via Data-Free Knowledge Distillation for Machine Fault Diagnosis. IEEE Trans. Instrum. Meas. 73: 1-12 (2024) - [j133]Hui Wang, Zheng Zhou, Liuyang Zhang, Ruqiang Yan:
Multiscale Deep Attention Q Network: A New Deep Reinforcement Learning Method for Imbalanced Fault Diagnosis in Gearboxes. IEEE Trans. Instrum. Meas. 73: 1-12 (2024) - [j132]Jingyao Wu, Hongbing Shang, Chuang Sun, Ruqiang Yan, Xuefeng Chen:
Information-Imbalance Learning With Hazard-Sensitive Loss for Machine Fault Diagnosis. IEEE Trans. Instrum. Meas. 73: 1-11 (2024) - [j131]Yulin Ma, Jun Yang, Ruqiang Yan:
Sharpness-Aware Gradient Alignment for Domain Generalization With Noisy Labels in Intelligent Fault Diagnosis. IEEE Trans. Instrum. Meas. 73: 10-19 (2024) - [j130]Wengang Xu, Zheng Zhou, Tianfu Li, Chuang Sun, Xuefeng Chen, Ruqiang Yan:
Physics-Constraint Variational Neural Network for Wear State Assessment of External Gear Pump. IEEE Trans. Neural Networks Learn. Syst. 35(5): 5996-6006 (2024) - [j129]Botao An, Shibin Wang, Fuhua Qin, Zhibin Zhao, Ruqiang Yan, Xuefeng Chen:
Adversarial Algorithm Unrolling Network for Interpretable Mechanical Anomaly Detection. IEEE Trans. Neural Networks Learn. Syst. 35(5): 6007-6020 (2024) - [j128]Yasong Li, Zheng Zhou, Chuang Sun, Xuefeng Chen, Ruqiang Yan:
Variational Attention-Based Interpretable Transformer Network for Rotary Machine Fault Diagnosis. IEEE Trans. Neural Networks Learn. Syst. 35(5): 6180-6193 (2024) - [j127]Tianfu Li, Chuang Sun, Sinan Li, Zhiying Wang, Xuefeng Chen, Ruqiang Yan:
Explainable Graph Wavelet Denoising Network for Intelligent Fault Diagnosis. IEEE Trans. Neural Networks Learn. Syst. 35(6): 8535-8548 (2024) - [j126]Sinan Li, Tianfu Li, Chuang Sun, Xuefeng Chen, Ruqiang Yan:
WPConvNet: An Interpretable Wavelet Packet Kernel-Constrained Convolutional Network for Noise-Robust Fault Diagnosis. IEEE Trans. Neural Networks Learn. Syst. 35(10): 14974-14988 (2024) - [j125]Yongyi Chen, Dan Zhang, Ruqiang Yan:
Domain Adaptation Networks With Parameter-Free Adaptively Rectified Linear Units for Fault Diagnosis Under Variable Operating Conditions. IEEE Trans. Neural Networks Learn. Syst. 35(11): 16872-16885 (2024) - [j124]Wenjun Sun, Ruqiang Yan, Ruibing Jin, Jiawen Xu, Yuan Yang, Zhenghua Chen:
LiteFormer: A Lightweight and Efficient Transformer for Rotating Machine Fault Diagnosis. IEEE Trans. Reliab. 73(2): 1258-1269 (2024) - [c33]Chenye Hu, Jiaxin Ren, Jingyao Wu, Hong Xu, Chuang Sun, Ruqiang Yan:
NorCLR: A Normality-Aggregated Contrastive Learning Framework for Mechanical Anomaly Detection. I2MTC 2024: 1-6 - [c32]Lei Jin, Shibin Wang, Du Zhang, Baoqing Ding, Zhi Zhai, Ruqiang Yan, Xuefeng Chen:
Indicator-assisted Sparse Morphological Decomposition for High-speed Bearing Diagnosis. I2MTC 2024: 1-5 - [c31]Jiaxin Ren, Chenye Hu, Zuogang Shang, Yasong Li, Zhibin Zhao, Ruqiang Yan:
WavFormer: An Interpretable Wavelet-Constrained Transformer for Industrial Acoustics Diagnosis. I2MTC 2024: 1-6 - [c30]Wenjun Sun, Ruqiang Yan:
Prototype Based Personalized Federated Learning for Planetary Gearbox Fault Diagnosis. I2MTC 2024: 1-6 - [c29]Zuogang Shang, Zhibin Zhao, Shibin Wang, Ruqiang Yan:
Anomaly Detection from a Frequency Perspective: M-Band Wavelet Packet Anomaly Detection Network. ICASSP 2024: 5550-5554 - 2023
- [j123]Hongbing Shang, Chuang Sun, Jinxin Liu, Xuefeng Chen, Ruqiang Yan:
Defect-aware transformer network for intelligent visual surface defect detection. Adv. Eng. Informatics 55: 101882 (2023) - [j122]Jingyao Wu, Chenye Hu, Chuang Sun, Xuefeng Chen, Ruqiang Yan:
Aircraft flight regime recognition with deep temporal segmentation neural network. Eng. Appl. Artif. Intell. 120: 105840 (2023) - [j121]Yuangui Yang, Tianfu Li, Chuang Sun, Liuyang Zhang, Ruqiang Yan:
Graph attention U-Net to fuse multi-sensor signals for long-tailed distribution fault diagnosis. Eng. Appl. Artif. Intell. 126: 106927 (2023) - [j120]Chenye Hu, Jingyao Wu, Chuang Sun, Xuefeng Chen, Ruqiang Yan:
Intelligent temporal detection network for boundary-sensitive flight regime recognition. Eng. Appl. Artif. Intell. 126: 106949 (2023) - [j119]Juan Xu, Shaokang Liang, Xu Ding, Ruqiang Yan:
A zero-shot fault semantics learning model for compound fault diagnosis. Expert Syst. Appl. 221: 119642 (2023) - [j118]Jun Wang, Tianfu Li, Chuang Sun, Ruqiang Yan, Xuefeng Chen:
BP-SRM: A directly training algorithm for spiking neural network constructed by spike response model. Neurocomputing 560: 126832 (2023) - [j117]Haoqi Li, Shuming Wu, Zhibo Yang, Ruqiang Yan, Xuefeng Chen:
Measurement Methodology: Blade Tip Timing: A Non-Contact Blade Vibration Measurement Method. IEEE Instrum. Meas. Mag. 26(9): 12-20 (2023) - [j116]Zihao Lei, Hongming Chen, Guangrui Wen, Ke Feng, Zheng Liu, Ruqiang Yan, Xuefeng Chen:
A Synchronous Holo-Balancing Method for Flexible Rotors Based on the Modified Initial Phase Vector. Inf. Fusion 90: 95-110 (2023) - [j115]Yadong Xu, Ke Feng, Xiaoan Yan, Ruqiang Yan, Qing Ni, Beibei Sun, Zihao Lei, Yongchao Zhang, Zheng Liu:
CFCNN: A novel convolutional fusion framework for collaborative fault identification of rotating machinery. Inf. Fusion 95: 1-16 (2023) - [j114]Huijie Zhang, Weizhen Sun, Ling Lu, Ruqiang Yan:
Finger vein recognition with cancelable template-based partial mutual encryption. J. Electronic Imaging 32(5) (2023) - [j113]Fujin Wang, Zhibin Zhao, Zhi Zhai, Zuogang Shang, Ruqiang Yan, Xuefeng Chen:
Explainability-driven model improvement for SOH estimation of lithium-ion battery. Reliab. Eng. Syst. Saf. 232: 109046 (2023) - [j112]Yasong Li, Zheng Zhou, Chuang Sun, Jun Peng, Asoke K. Nandi, Ruqiang Yan:
Life-cycle modeling driven by coupling competition degradation for remaining useful life prediction. Reliab. Eng. Syst. Saf. 238: 109480 (2023) - [j111]Xi Chen, Hui Wang, Siliang Lu, Jiawen Xu, Ruqiang Yan:
Remaining useful life prediction of turbofan engine using global health degradation representation in federated learning. Reliab. Eng. Syst. Saf. 239: 109511 (2023) - [j110]Jiahui Cao, Zhibo Yang, Shaohua Tian, Haoqi Li, Ruochen Jin, Ruqiang Yan, Xuefeng Chen:
Biprobes Blade Tip Timing Method for Frequency Identification Based on Active Aliasing Time-Delay Estimation and Dealiasing. IEEE Trans. Ind. Electron. 70(2): 1939-1948 (2023) - [j109]Zengkun Wang, Zhibo Yang, Guangrong Teng, Ruqiang Yan, Shaohua Tian, Haoqi Li, Jiahui Cao, Xuefeng Chen:
Amplitude-Identifiable MUSIC (Aid-MUSIC) for Asynchronous Frequency in Blade Tip Timing. IEEE Trans. Ind. Informatics 19(4): 5732-5742 (2023) - [j108]Chenye Hu, Jingyao Wu, Chuang Sun, Ruqiang Yan, Xuefeng Chen:
Interinstance and Intratemporal Self-Supervised Learning With Few Labeled Data for Fault Diagnosis. IEEE Trans. Ind. Informatics 19(5): 6502-6512 (2023) - [j107]Hongbing Shang, Jingyao Wu, Chuang Sun, Jinxin Liu, Xuefeng Chen, Ruqiang Yan:
Global Prior Transformer Network in Intelligent Borescope Inspection for Surface Damage Detection of Aeroengine Blade. IEEE Trans. Ind. Informatics 19(8): 8865-8877 (2023) - [j106]Xi Chen, Hui Wang, Siliang Lu, Ruqiang Yan:
Bearing Remaining Useful Life Prediction Using Federated Learning With Taylor-Expansion Network Pruning. IEEE Trans. Instrum. Meas. 72: 1-10 (2023) - [j105]Zhikang Liu, Xingyu Chen, Jiawen Xu, Chengxin Zhang, Luxiang Xu, Ning Guo, Liye Zhao, Ruqiang Yan:
High-Accurate Robust Total Variation Denoising Algorithm With Adjustable Exponential Upper Bound Function for Micro-Thrust Measurement. IEEE Trans. Instrum. Meas. 72: 1-18 (2023) - [j104]Ruqiang Yan:
Editor-in-Chief's Year-End Message. IEEE Trans. Instrum. Meas. 72: 1 (2023) - [j103]Shaowen Chen, Shibin Wang, Botao An, Ruqiang Yan, Xuefeng Chen:
Instantaneous Frequency Band and Synchrosqueezing in Time-Frequency Analysis. IEEE Trans. Signal Process. 71: 539-554 (2023) - [c28]Fuhua Qin, Shiao Wang, Shibin Wang, Zhibin Zhao, Ruqiang Yan, Xuefeng Chen:
MCAN: Interpretable Multi-scale Component Analysis Network for Mechanical Fault Diagnosis. I2MTC 2023: 1-6 - [c27]Hui Wang, Zheng Zhou, Ruqiang Yan, Liuyang Zhang:
Multiscale Deep Attention Reinforcement Learning for Imbalanced Fault Diagnosis of Gearbox Under Multi-Working Conditions. I2MTC 2023: 1-6 - [c26]Yu Zhao, Xingwu Zhang, Fangfang Yang, Xiaolei Yu, Ruqiang Yan, Xuefeng Chen:
Decision Boundary Expansion For Open Set Fault Diagnosis. I2MTC 2023: 1-6 - 2022
- [j102]Ruqiang Yan:
Guest Editorial: I&M Around the World: Highlighting China from IEEE Region 10. IEEE Instrum. Meas. Mag. 25(2): 3 (2022) - [j101]Jinxin Liu, Xingwu Zhang, Chenxi Wang, Ruqiang Yan:
Active Vibration Control Technology in China. IEEE Instrum. Meas. Mag. 25(2): 36-44 (2022) - [j100]Shibin Wang, Chaowei Tong, Zhiyu Tao, Ruqiang Yan, Xuefeng Chen:
Helicopter Health and Usage Monitoring System in China. IEEE Instrum. Meas. Mag. 25(2): 45-52 (2022) - [j99]Ruqiang Yan:
Guest Editorial: I&M Around the World: Highlighting China of IEEE Region 10, Part B. IEEE Instrum. Meas. Mag. 25(5): 3 (2022) - [j98]Ziling Huang, Zihao Lei, Guangrui Wen, Xin Huang, Haoxuan Zhou, Ruqiang Yan, Xuefeng Chen:
A Multisource Dense Adaptation Adversarial Network for Fault Diagnosis of Machinery. IEEE Trans. Ind. Electron. 69(6): 6298-6307 (2022) - [j97]Botao An, Shibin Wang, Zhibin Zhao, Fuhua Qin, Ruqiang Yan, Xuefeng Chen:
Interpretable Neural Network via Algorithm Unrolling for Mechanical Fault Diagnosis. IEEE Trans. Instrum. Meas. 71: 1-11 (2022) - [j96]Jiahui Cao, Shaohua Tian, Zhibo Yang, Guangrong Teng, Haoqi Li, Ruochen Jin, Ruqiang Yan, Xuefeng Chen:
Blade Tip Timing Signal Filtering Method Based on Sampling Aliasing Frequency Map. IEEE Trans. Instrum. Meas. 71: 1-12 (2022) - [j95]Borui Hou, Ruqiang Yan:
Triplet-Classifier GAN for Finger-Vein Verification. IEEE Trans. Instrum. Meas. 71: 1-12 (2022) - [j94]Borui Hou, Huijie Zhang, Ruqiang Yan:
Finger-Vein Biometric Recognition: A Review. IEEE Trans. Instrum. Meas. 71: 1-26 (2022) - [j93]Ruibing Jin, Zhenghua Chen, Keyu Wu, Min Wu, Xiaoli Li, Ruqiang Yan:
Bi-LSTM-Based Two-Stream Network for Machine Remaining Useful Life Prediction. IEEE Trans. Instrum. Meas. 71: 1-10 (2022) - [j92]Xingyu Wang, Zhen Zhang, Yafei Xu, Liuyang Zhang, Ruqiang Yan, Xuefeng Chen:
Real-Time Terahertz Characterization of Minor Defects by the YOLOX-MSA Network. IEEE Trans. Instrum. Meas. 71: 1-10 (2022) - [j91]Ruqiang Yan:
Editor-in-Chief's Year-End Message. IEEE Trans. Instrum. Meas. 71: 1 (2022) - [j90]Xingwu Zhang, Rui Ma, Ming Li, Xiaolong Li, Zhibo Yang, Ruqiang Yan, Xuefeng Chen:
Feature Enhancement Based on Regular Sparse Model for Planetary Gearbox Fault Diagnosis. IEEE Trans. Instrum. Meas. 71: 1-16 (2022) - [j89]Tianfu Li, Zhibin Zhao, Chuang Sun, Li Cheng, Xuefeng Chen, Ruqiang Yan, Robert X. Gao:
WaveletKernelNet: An Interpretable Deep Neural Network for Industrial Intelligent Diagnosis. IEEE Trans. Syst. Man Cybern. Syst. 52(4): 2302-2312 (2022) - [c25]Chenyang Li, Chee Keong Kwoh, Xiaoli Li, Lingfei Mo, Ruqiang Yan:
Rotating Machinery Fault Diagnosis Based on Multi-sensor Information Fusion Using Graph Attention Network. ICARCV 2022: 678-683 - [c24]Rosario Morello, Ruqiang Yan, Laura Fabbiano:
Repeatability and Intermediate Precision in Thermographic Clinical Imaging. MeMeA 2022: 1-6 - [i6]Hongbing Shang, Qixiu Yang, Chuang Sun, Xuefeng Chen, Ruqiang Yan:
Superpixel Perception Graph Neural Network for Intelligent Defect Detection. CoRR abs/2210.07539 (2022) - 2021
- [j88]Mohamed Ragab, Zhenghua Chen, Min Wu, Chee Keong Kwoh, Ruqiang Yan, Xiaoli Li:
Attention-based sequence to sequence model for machine remaining useful life prediction. Neurocomputing 466: 58-68 (2021) - [j87]Tianfu Li, Zhibin Zhao, Chuang Sun, Ruqiang Yan, Xuefeng Chen:
Hierarchical attention graph convolutional network to fuse multi-sensor signals for remaining useful life prediction. Reliab. Eng. Syst. Saf. 215: 107878 (2021) - [j86]Jingyao Wu, Zhibin Zhao, Chuang Sun, Ruqiang Yan, Xuefeng Chen:
Learning from Class-imbalanced Data with a Model-Agnostic Framework for Machine Intelligent Diagnosis. Reliab. Eng. Syst. Saf. 216: 107934 (2021) - [j85]Zhibin Zhao, Shibin Wang, David Wong, Chuang Sun, Ruqiang Yan, Xuefeng Chen:
Robust enhanced trend filtering with unknown noise. Signal Process. 180: 107889 (2021) - [j84]Zhenghua Chen, Min Wu, Rui Zhao, Feri Guretno, Ruqiang Yan, Xiaoli Li:
Machine Remaining Useful Life Prediction via an Attention-Based Deep Learning Approach. IEEE Trans. Ind. Electron. 68(3): 2521-2531 (2021) - [j83]Tianfu Li, Zhibin Zhao, Chuang Sun, Ruqiang Yan, Xuefeng Chen:
Multireceptive Field Graph Convolutional Networks for Machine Fault Diagnosis. IEEE Trans. Ind. Electron. 68(12): 12739-12749 (2021) - [j82]Mohamed Ragab, Zhenghua Chen, Min Wu, Chuan Sheng Foo, Chee Keong Kwoh, Ruqiang Yan, Xiaoli Li:
Contrastive Adversarial Domain Adaptation for Machine Remaining Useful Life Prediction. IEEE Trans. Ind. Informatics 17(8): 5239-5249 (2021) - [j81]Botao An, Shibin Wang, Ruqiang Yan, Weihua Li, Xuefeng Chen:
Adaptive Robust Noise Modeling of Sparse Representation for Bearing Fault Diagnosis. IEEE Trans. Instrum. Meas. 70: 1-12 (2021) - [j80]Chao Chen, Fei Shen, Jiawen Xu, Ruqiang Yan:
Domain Adaptation-Based Transfer Learning for Gear Fault Diagnosis Under Varying Working Conditions. IEEE Trans. Instrum. Meas. 70: 1-10 (2021) - [j79]Borui Hou, Ruqiang Yan:
ArcVein-Arccosine Center Loss for Finger Vein Verification. IEEE Trans. Instrum. Meas. 70: 1-11 (2021) - [j78]Chenyang Li, Lingfei Mo, Ruqiang Yan:
Fault Diagnosis of Rolling Bearing Based on WHVG and GCN. IEEE Trans. Instrum. Meas. 70: 1-11 (2021) - [j77]Haoqi Li, Zhibo Yang, Shuming Wu, Zengkun Wang, Shaohua Tian, Ruqiang Yan, Xuefeng Chen:
Adaptive Iterative Approach for Efficient Signal Processing of Blade Tip Timing. IEEE Trans. Instrum. Meas. 70: 1-13 (2021) - [j76]Tianfu Li, Zhibin Zhao, Chuang Sun, Ruqiang Yan, Xuefeng Chen:
Domain Adversarial Graph Convolutional Network for Fault Diagnosis Under Variable Working Conditions. IEEE Trans. Instrum. Meas. 70: 1-10 (2021) - [j75]Huihui Miao, Zhibin Zhao, Chuang Sun, Bing Li, Ruqiang Yan:
A U-Net-Based Approach for Tool Wear Area Detection and Identification. IEEE Trans. Instrum. Meas. 70: 1-10 (2021) - [j74]Mohamed Ragab, Zhenghua Chen, Min Wu, Haoliang Li, Chee-Keong Kwoh, Ruqiang Yan, Xiaoli Li:
Adversarial Multiple-Target Domain Adaptation for Fault Classification. IEEE Trans. Instrum. Meas. 70: 1-11 (2021) - [j73]Zengkun Wang, Zhibo Yang, Shuming Wu, Haoqi Li, Shaohua Tian, Xingwu Zhang, Ruqiang Yan, Xuefeng Chen:
An OPR-Free Blade Tip Timing Method for Rotating Blade Condition Monitoring. IEEE Trans. Instrum. Meas. 70: 1-11 (2021) - [j72]Jiyan Wu, Min Wu, Zhenghua Chen, Xiaoli Li, Ruqiang Yan:
Degradation-Aware Remaining Useful Life Prediction With LSTM Autoencoder. IEEE Trans. Instrum. Meas. 70: 1-10 (2021) - [j71]Shuming Wu, Zengkun Wang, Haoqi Li, Zhibo Yang, Shaohua Tian, Ruqiang Yan, Shibin Wang, Xuefeng Chen:
Blade Crack Detection Using Blade Tip Timing. IEEE Trans. Instrum. Meas. 70: 1-13 (2021) - [j70]Ruqiang Yan:
Message From the Incoming Editor-in-Chief. IEEE Trans. Instrum. Meas. 70: 1 (2021) - [j69]Ruqiang Yan, Datong Liu:
Guest Editorial Special Section for ICSMD2020. IEEE Trans. Instrum. Meas. 70: 1-2 (2021) - [j68]Xiaolei Yu, Zhibin Zhao, Xingwu Zhang, Chuang Sun, Baogui Gong, Ruqiang Yan, Xuefeng Chen:
Conditional Adversarial Domain Adaptation With Discrimination Embedding for Locomotive Fault Diagnosis. IEEE Trans. Instrum. Meas. 70: 1-12 (2021) - [j67]Zilong Zhang, Zhibin Zhao, Xiaolong Li, Xingwu Zhang, Shibin Wang, Ruqiang Yan, Xuefeng Chen:
Faster Multiscale Dictionary Learning Method With Adaptive Parameter Estimation for Fault Diagnosis of Traction Motor Bearings. IEEE Trans. Instrum. Meas. 70: 1-13 (2021) - [j66]Zhibin Zhao, Qiyang Zhang, Xiaolei Yu, Chuang Sun, Shibin Wang, Ruqiang Yan, Xuefeng Chen:
Applications of Unsupervised Deep Transfer Learning to Intelligent Fault Diagnosis: A Survey and Comparative Study. IEEE Trans. Instrum. Meas. 70: 1-28 (2021) - [j65]Zheng Zhou, Tianfu Li, Zilong Zhang, Zhibin Zhao, Chuang Sun, Ruqiang Yan, Xuefeng Chen:
Bayesian Differentiable Architecture Search for Efficient Domain Matching Fault Diagnosis. IEEE Trans. Instrum. Meas. 70: 1-11 (2021) - [j64]Chaoyi Zhu, Zhenghua Chen, Rui Zhao, Jinjiang Wang, Ruqiang Yan:
Decoupled Feature-Temporal CNN: Explaining Deep Learning-Based Machine Health Monitoring. IEEE Trans. Instrum. Meas. 70: 1-13 (2021) - [j63]Chaowei Tong, Shibin Wang, Ivan W. Selesnick, Ruqiang Yan, Xuefeng Chen:
Ridge-Aware Weighted Sparse Time-Frequency Representation. IEEE Trans. Signal Process. 69: 136-149 (2021) - [c23]Zuogang Shang, Zhibin Zhao, Hui Fang, Samuel D. Relton, Darcy Murphy, Zoe Hancox, Ruqiang Yan, David Wong:
Deep Discriminative Domain Generalization with Adversarial Feature Learning for Classifying ECG Signals. CinC 2021: 1-4 - [c22]Zengkun Wang, Zhibo Yang, Haoqi Li, Shuming Wu, Ruqiang Yan, Shaohua Tian, Xuefeng Chen:
An Autocorrelation Method for Asynchronous Vibration Feature Extraction in Blade Tip Timing. I2MTC 2021: 1-6 - [c21]Shuming Wu, Zhibo Yang, Haoqi Li, Zengkun Wang, Shaohua Tian, Ruqiang Yan, Xuefeng Chen:
A Virtual Blade Tip Timing Measurement Method for Foreign Object Damage. I2MTC 2021: 1-5 - [c20]Jingyao Wu, Zhibin Zhao, Hongbing Shang, Chuang Sun, Ruqiang Yan, Xuefeng Chen:
Machine Anomaly Detection under Changing Working Condition with Syncretic Self-Regression Auto-Encoder. I2MTC 2021: 1-5 - 2020
- [j62]Xingwu Zhang, Yanfei He, Zengguang Li, Zhi Zhai, Ruqiang Yan, Xuefeng Chen:
Static and dynamic analysis of cylindrical shell by different kinds of B-spline wavelet finite elements on the interval. Eng. Comput. 36(4): 1903-1914 (2020) - [j61]Ruqiang Yan:
Society news. IEEE Instrum. Meas. Mag. 23(6): 41 (2020) - [j60]Marco Parvis, Ruqiang Yan:
Guest editorial. IEEE Instrum. Meas. Mag. 23(8): 3 (2020) - [j59]Fei Shen, Reza Langari, Ruqiang Yan:
Exploring Sample/Feature Hybrid Transfer for Gear Fault Diagnosis Under Varying Working Conditions. J. Comput. Inf. Sci. Eng. 20(4) (2020) - [j58]Liangdong Yang, Jinxin Liu, Qian Zhang, Ruqiang Yan, Xuefeng Chen:
Frequency domain spline adaptive filters. Signal Process. 177: 107752 (2020) - [j57]Fei Shen, Yun Hui, Ruqiang Yan, Chuang Sun, Jiawen Xu:
A New Penalty Domain Selection Machine Enabled Transfer Learning for Gearbox Fault Recognition. IEEE Trans. Ind. Electron. 67(10): 8743-8754 (2020) - [j56]Jingyao Wu, Zhibin Zhao, Chuang Sun, Ruqiang Yan, Xuefeng Chen:
Fault-Attention Generative Probabilistic Adversarial Autoencoder for Machine Anomaly Detection. IEEE Trans. Ind. Informatics 16(12): 7479-7488 (2020) - [j55]Dezun Zhao, Weidong Cheng, Robert X. Gao, Ruqiang Yan, Peng Wang:
Generalized Vold-Kalman Filtering for Nonstationary Compound Faults Feature Extraction of Bearing and Gear. IEEE Trans. Instrum. Meas. 69(2): 401-410 (2020) - [j54]Zhibin Zhao, Shibin Wang, Chuang Sun, Ruqiang Yan, Xuefeng Chen:
Sparse Multiperiod Group Lasso for Bearing Multifault Diagnosis. IEEE Trans. Instrum. Meas. 69(2): 419-431 (2020) - [j53]Borui Hou, Jianyong Yang, Pu Wang, Ruqiang Yan:
LSTM-Based Auto-Encoder Model for ECG Arrhythmias Classification. IEEE Trans. Instrum. Meas. 69(4): 1232-1240 (2020) - [j52]Chuang Sun, Xuefeng Chen, Ruqiang Yan, Robert X. Gao:
Composite-Graph-Based Sparse Subspace Clustering for Machine Fault Diagnosis. IEEE Trans. Instrum. Meas. 69(5): 1850-1859 (2020) - [j51]Borui Hou, Ruqiang Yan:
Convolutional Autoencoder Model for Finger-Vein Verification. IEEE Trans. Instrum. Meas. 69(5): 2067-2074 (2020) - [j50]Hui Wang, Jiawen Xu, Ruqiang Yan, Robert X. Gao:
A New Intelligent Bearing Fault Diagnosis Method Using SDP Representation and SE-CNN. IEEE Trans. Instrum. Meas. 69(5): 2377-2389 (2020) - [j49]Shuming Wu, Pete Russhard, Ruqiang Yan, Shaohua Tian, Shibin Wang, Zhibin Zhao, Xuefeng Chen:
An Adaptive Online Blade Health Monitoring Method: From Raw Data to Parameters Identification. IEEE Trans. Instrum. Meas. 69(5): 2581-2592 (2020) - [j48]Zhiqiang Huo, Miguel Martínez-García, Yu Zhang, Ruqiang Yan, Lei Shu:
Entropy Measures in Machine Fault Diagnosis: Insights and Applications. IEEE Trans. Instrum. Meas. 69(6): 2607-2620 (2020) - [j47]Siyu Shao, Ruqiang Yan, Yadong Lu, Peng Wang, Robert X. Gao:
DCNN-Based Multi-Signal Induction Motor Fault Diagnosis. IEEE Trans. Instrum. Meas. 69(6): 2658-2669 (2020) - [j46]Chao Chen, Fei Shen, Jiawen Xu, Ruqiang Yan:
Probabilistic Latent Semantic Analysis-Based Gear Fault Diagnosis Under Variable Working Conditions. IEEE Trans. Instrum. Meas. 69(6): 2845-2857 (2020) - [c19]Zhibin Zhao, Hui Fang, Samuel D. Relton, Ruqiang Yan, Yuhong Liu, Zhijing Li, Jing Qin, David C. Wong:
Adaptive Lead Weighted ResNet Trained With Different Duration Signals for Classifying 12-lead ECGs. CinC 2020: 1-4 - [c18]Botao An, Shibin Wang, Ruqiang Yan, Weihua Li, Xuefeng Chen:
Generalized Gaussian Noise Distribution Enabled Sparse Representation Model for Bearing Fault Diagnosis. I2MTC 2020: 1-5 - [c17]Fei Shen, Chao Chen, Jiawen Xu, Robert X. Gao, Ruqiang Yan:
A Two-Order Transfer Model for Gearbox Fault Diagnosis. I2MTC 2020: 1-6 - [c16]Zengkun Wang, Zhibo Yang, Shuming Wu, Haoqi Li, Ruqiang Yan, Shaohua Tian, Xingwu Zhang, Xuefeng Chen:
An OPR-free Blade Tip Timing Method Based on Blade Spacing Change. I2MTC 2020: 1-5 - [c15]Shuming Wu, Zengkun Wang, Haoqi Li, Zhibo Yang, Shaohua Tian, Ruqiang Yan, Shibin Wang, Xuefeng Chen:
A Hybrid Fault Diagnosis Approach for Blade Crack Detection using Blade Tip Timing. I2MTC 2020: 1-5 - [i5]Zhibin Zhao, Tianfu Li, Jingyao Wu, Chuang Sun, Shibin Wang, Ruqiang Yan, Xuefeng Chen:
Deep Learning Algorithms for Rotating Machinery Intelligent Diagnosis: An Open Source Benchmark Study. CoRR abs/2003.03315 (2020) - [i4]Mohamed Ragab, Zhenghua Chen, Min Wu, Chee-Keong Kwoh, Ruqiang Yan, Xiaoli Li:
Attention Sequence to Sequence Model for Machine Remaining Useful Life Prediction. CoRR abs/2007.09868 (2020)
2010 – 2019
- 2019
- [j45]Pu Wang, Hui Wang, Ruqiang Yan:
Bearing Degradation Evaluation Using Improved Cross Recurrence Quantification Analysis and Nonlinear Auto-Regressive Neural Network. IEEE Access 7: 38937-38946 (2019) - [j44]Pu Wang, Borui Hou, Siyu Shao, Ruqiang Yan:
ECG Arrhythmias Detection Using Auxiliary Classifier Generative Adversarial Network and Residual Network. IEEE Access 7: 100910-100922 (2019) - [j43]Siyu Shao, Pu Wang, Ruqiang Yan:
Generative adversarial networks for data augmentation in machine fault diagnosis. Comput. Ind. 106: 85-93 (2019) - [j42]Ruqiang Yan, Xuefeng Chen, Peng Wang, Darian M. Onchis:
Deep learning for fault diagnosis and prognosis in manufacturing systems. Comput. Ind. 110: 1-2 (2019) - [j41]Jingxia Zhang, Ruqiang Yan:
Centralized Energy-Efficient Clustering Routing Protocol for Mobile Nodes in Wireless Sensor Networks. IEEE Commun. Lett. 23(7): 1215-1218 (2019) - [j40]Liangdong Yang, Jinxin Liu, Ruqiang Yan, Xuefeng Chen:
Spline adaptive filter with arctangent-momentum strategy for nonlinear system identification. Signal Process. 164: 99-109 (2019) - [j39]Chuang Sun, Meng Ma, Zhibin Zhao, Shaohua Tian, Ruqiang Yan, Xuefeng Chen:
Deep Transfer Learning Based on Sparse Autoencoder for Remaining Useful Life Prediction of Tool in Manufacturing. IEEE Trans. Ind. Informatics 15(4): 2416-2425 (2019) - [j38]Siyu Shao, Stephen McAleer, Ruqiang Yan, Pierre Baldi:
Highly Accurate Machine Fault Diagnosis Using Deep Transfer Learning. IEEE Trans. Ind. Informatics 15(4): 2446-2455 (2019) - [j37]Meng Ma, Chuang Sun, Xuefeng Chen, Xingwu Zhang, Ruqiang Yan:
A Deep Coupled Network for Health State Assessment of Cutting Tools Based on Fusion of Multisensory Signals. IEEE Trans. Ind. Informatics 15(12): 6415-6424 (2019) - [j36]Siliang Lu, Ruqiang Yan, Yongbin Liu, Qunjing Wang:
Tacholess Speed Estimation in Order Tracking: A Review With Application to Rotating Machine Fault Diagnosis. IEEE Trans. Instrum. Meas. 68(7): 2315-2332 (2019) - [j35]Peng Dai, Yuan Yang, Manyi Wang, Ruqiang Yan:
Combination of DNN and Improved KNN for Indoor Location Fingerprinting. Wirel. Commun. Mob. Comput. 2019: 4283857:1-4283857:9 (2019) - [c14]Hui Wang, Jiawen Xu, Ruqiang Yan:
Bearing Fault Diagnosis Based on Visual Symmetrized Dot Pattern and CNNs. I2MTC 2019: 1-6 - [c13]Shuming Wu, Xuefeng Chen, Pete Russhard, Ruqiang Yan, Shaohua Tian, Shibin Wang, Zhibin Zhao:
Blade Tip Timing: from Raw Data to Parameters Identification. I2MTC 2019: 1-5 - [c12]Jingxia Zhang, Ruqiang Yan:
Multi-objective Distributed Clustering Algorithm in Wireless Sensor Networks Using the Analytic Hierarchy Process. SNPD 2019: 88-93 - [i3]Tianfu Li, Zhibin Zhao, Chuang Sun, Li Cheng, Xuefeng Chen, Ruqiang Yan, Robert X. Gao:
WaveletKernelNet: An Interpretable Deep Neural Network for Industrial Intelligent Diagnosis. CoRR abs/1911.07925 (2019) - [i2]Zhibin Zhao, Qiyang Zhang, Xiaolei Yu, Chuang Sun, Shibin Wang, Ruqiang Yan, Xuefeng Chen:
Unsupervised Deep Transfer Learning for Intelligent Fault Diagnosis: An Open Source and Comparative Study. CoRR abs/1912.12528 (2019) - 2018
- [j34]Ruqiang Yan:
TC-39 measurements in power systems [Society News]. IEEE Instrum. Meas. Mag. 21(2): 36 (2018) - [j33]Jing Meng, Liye Zhao, Fei Shen, Ruqiang Yan:
Gear fault diagnosis based on recurrence network. J. Intell. Fuzzy Syst. 34(6): 3651-3660 (2018) - [j32]Rui Zhao, Dongzhe Wang, Ruqiang Yan, Kezhi Mao, Fei Shen, Jinjiang Wang:
Machine Health Monitoring Using Local Feature-Based Gated Recurrent Unit Networks. IEEE Trans. Ind. Electron. 65(2): 1539-1548 (2018) - [j31]Zhaohui Du, Xuefeng Chen, Han Zhang, Ruqiang Yan, Wotao Yin:
Learning Collaborative Sparsity Structure via Nonconvex Optimization for Feature Recognition. IEEE Trans. Ind. Informatics 14(10): 4417-4430 (2018) - [c11]Xiaonan Liu, Wenjin Chen, Jie Liu, Weihua Li, Ruqiang Yan:
Electric vehicle battery temperature measuring method based on magnetic nanoparticles. I2MTC 2018: 1-5 - [c10]Borui Hou, Ruqiang Yan:
Convolutional Auto-Encoder Based Deep Feature Learning for Finger-Vein Verification. MeMeA 2018: 1-5 - 2017
- [j30]Rui Zhao, Ruqiang Yan, Jinjiang Wang, Kezhi Mao:
Learning to Monitor Machine Health with Convolutional Bi-Directional LSTM Networks. Sensors 17(2): 273 (2017) - [j29]Fei Shen, Ruqiang Yan:
Design and Implementation of a Hypothermic Machine Perfusion Device for Clinical Preservation of Isolated Organs. Sensors 17(6): 1256 (2017) - [j28]Wenjun Sun, Rui Zhao, Ruqiang Yan, Siyu Shao, Xuefeng Chen:
Convolutional Discriminative Feature Learning for Induction Motor Fault Diagnosis. IEEE Trans. Ind. Informatics 13(3): 1350-1359 (2017) - [j27]Alessandra Flammini, Ruqiang Yan, Huang-Chen Lee:
Special Issue on The 2016 IEEE International Instrumentation and Measurement Technology Conference. IEEE Trans. Instrum. Meas. 66(5): 850-851 (2017) - [c9]Borui Hou, Ruqiang Yan, Xuefeng Chen, Yanmeng Liu:
Bearing fault diagnosis using wavelet domain operator-based signal separation. I2MTC 2017: 1-5 - [c8]Li Zhang, Ruqiang Yan, Hanghang Sun, Yuning Qian:
A wireless general air-conditioner remote-controller for smart homes. ICST 2017: 1-6 - 2016
- [j26]Ruqiang Yan, Xiang Li, Zhangwei Chen, Qi Xu, Xuefeng Chen:
Improving calibration accuracy of a vibration sensor through a closed loop measurement system. IEEE Instrum. Meas. Mag. 19(1): 42-46 (2016) - [j25]Ruqiang Yan:
Instrumentation and measurement around the world: Region 10 [Guest Editorial]. IEEE Instrum. Meas. Mag. 19(2): 5 (2016) - [j24]Xuefeng Chen, Ruqiang Yan, Yanmeng Liu:
Wind turbine condition monitoring and fault diagnosis in China. IEEE Instrum. Meas. Mag. 19(2): 22-28 (2016) - [j23]Yuning Qian, Ruqiang Yan:
Gearbox Fault Diagnosis in a Wind Turbine Using Single Sensor Based Blind Source Separation. J. Sensors 2016: 6971952:1-6971952:14 (2016) - [j22]Xingwu Zhang, Chenxi Wang, Robert X. Gao, Ruqiang Yan, Xuefeng Chen, Shibin Wang:
A Novel Hybrid Error Criterion-Based Active Control Method for on-Line Milling Vibration Suppression with Piezoelectric Actuators and Sensors. Sensors 16(1): 68 (2016) - [c7]Chuang Sun, Peng Wang, Ruqiang Yan, Robert X. Gao:
A sparse approach to fault severity classification for gearbox monitoring. FUSION 2016: 2303-2308 - [c6]Dongyu Wu, Peng Wang, Xingwu Zhang, Ruqiang Yan, Robert X. Gao:
A correlation-based approach to trustworthy sensing for cyber-physical systems. I2MTC 2016: 1-6 - [c5]Xueliang Yang, Ruqiang Yan, Robert X. Gao:
Induction motor fault diagnosis based on ensemble classifiers. I2MTC 2016: 1-5 - [i1]Rui Zhao, Ruqiang Yan, Zhenghua Chen, Kezhi Mao, Peng Wang, Robert X. Gao:
Deep Learning and Its Applications to Machine Health Monitoring: A Survey. CoRR abs/1612.07640 (2016) - 2015
- [j21]Liye Zhao, Lei Wang, Ruqiang Yan:
Rolling Bearing Fault Diagnosis Based on Wavelet Packet Decomposition and Multi-Scale Permutation Entropy. Entropy 17(9): 6447-6461 (2015) - [j20]Ruqiang Yan:
The IEEE IMS Chapter Nanjing/Shanghai/Wuhan Jt. sections. IEEE Instrum. Meas. Mag. 18(2): 41 (2015) - [j19]Zhaohui Du, Xuefeng Chen, Han Zhang, Ruqiang Yan:
Sparse Feature Identification Based on Union of Redundant Dictionary for Wind Turbine Gearbox Fault Diagnosis. IEEE Trans. Ind. Electron. 62(10): 6594-6605 (2015) - [j18]Yuning Qian, Ruqiang Yan:
Remaining Useful Life Prediction of Rolling Bearings Using an Enhanced Particle Filter. IEEE Trans. Instrum. Meas. 64(10): 2696-2707 (2015) - [c4]Xueliang Yang, Ruqiang Yan, Robert X. Gao:
Induction motor fault diagnosis using multiple class feature selection. I2MTC 2015: 256-260 - 2014
- [j17]Ruqiang Yan, Robert X. Gao, Xuefeng Chen:
Wavelets for fault diagnosis of rotary machines: A review with applications. Signal Process. 96: 1-15 (2014) - [j16]Darian M. Onchis, Ruqiang Yan, Pavel Rajmic:
Time-frequency methods for condition based maintenance and modal analysis. Signal Process. 96: iv-v (2014) - [j15]Yuning Qian, Ruqiang Yan, Shijie Hu:
Bearing Degradation Evaluation Using Recurrence Quantification Analysis and Kalman Filter. IEEE Trans. Instrum. Meas. 63(11): 2599-2610 (2014) - 2013
- [j14]Hong Zeng, Aiguo Song, Ruqiang Yan, Hongyun Qin:
EOG Artifact Correction from EEG Recording Using Stationary Subspace Analysis and Empirical Mode Decomposition. Sensors 13(11): 14839-14859 (2013) - [j13]Renhuan Yang, Xu Li, Aiguo Song, Bin He, Ruqiang Yan:
A 3-D Reconstruction Solution to Current Density Imaging Based on Acoustoelectric Effect by Deconvolution: A Simulation Study. IEEE Trans. Biomed. Eng. 60(5): 1181-1190 (2013) - [j12]Ruqiang Yan, Hanghang Sun, Yuning Qian:
Energy-Aware Sensor Node Design With Its Application in Wireless Sensor Networks. IEEE Trans. Instrum. Meas. 62(5): 1183-1191 (2013) - [c3]Jingjing Meng, Yuning Qian, Ruqiang Yan:
Pulse signal analysis based on wavelet packet transform and hidden Markov model estimation. I2MTC 2013: 671-675 - [c2]Yuning Qian, Shijie Hu, Ruqiang Yan:
Bearing performance degradation evaluation using recurrence quantification analysis and auto-regression model. I2MTC 2013: 1713-1716 - 2012
- [j11]Ruqiang Yan, Rui Zhao, Robert X. Gao:
Noise-assisted data processing in measurement science: Part one part 40 in a series of tutorials on instrumentation and measurement. IEEE Instrum. Meas. Mag. 15(5): 41-44 (2012) - [j10]Ruqiang Yan, Rui Zhao, Robert X. Gao:
Noise-assisted data processing in measurement science: Part two. IEEE Instrum. Meas. Mag. 15(6): 32-35 (2012) - [j9]Abhijit Kadrolkar, Robert X. Gao, Ruqiang Yan, Weibo Gong:
Variable-Word-Length Coding for Energy-Aware Signal Transmission. IEEE Trans. Instrum. Meas. 61(4): 850-864 (2012) - 2011
- [j8]Arnaz Malhi, Ruqiang Yan, Robert X. Gao:
Prognosis of Defect Propagation Based on Recurrent Neural Networks. IEEE Trans. Instrum. Meas. 60(3): 703-711 (2011) - 2010
- [j7]Ruqiang Yan, Yongbin Liu, Robert X. Gao:
Correlation Dimension Analysis: A Non-linear Time Series Analysis for Data Processing. IEEE Instrum. Meas. Mag. 13(6): 19-25 (2010)
2000 – 2009
- 2009
- [j6]Changting Wang, Robert X. Gao, Ruqiang Yan, Arnaz Malhi:
Rolling bearing defect severity assessment under varying operating conditions. Int. J. Manuf. Res. 4(1): 37-56 (2009) - [j5]Ruqiang Yan, Robert X. Gao:
Base Wavelet Selection for Bearing Vibration Signal Analysis. Int. J. Wavelets Multiresolution Inf. Process. 7(4): 411-426 (2009) - [j4]Ruqiang Yan, Robert X. Gao:
Energy-Based Feature Extraction for Defect Diagnosis in Rotary Machines. IEEE Trans. Instrum. Meas. 58(9): 3130-3139 (2009) - 2006
- [j3]Robert X. Gao, Ruqiang Yan:
Non-stationary signal processing for bearing health monitoring. Int. J. Manuf. Res. 1(1): 18-40 (2006) - [j2]Ruqiang Yan, Robert X. Gao:
Hilbert-Huang Transform-Based Vibration Signal Analysis for Machine Health Monitoring. IEEE Trans. Instrum. Meas. 55(6): 2320-2329 (2006) - [c1]Robert X. Gao, Changting Wang, Ruqiang Yan, Arnaz Malhi:
A Neural Network Approach to Bearing Health Assessment. IJCNN 2006: 899-906 - 2004
- [j1]Ruqiang Yan, Robert X. Gao:
Complexity as a measure for machine health evaluation. IEEE Trans. Instrum. Meas. 53(4): 1327-1334 (2004)
Coauthor Index
manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the of the Internet Archive (if available).
Privacy notice: By enabling the option above, your browser will contact the API of archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from , , and to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from .
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the information given by OpenAlex.
last updated on 2024-12-02 22:33 CET by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint