default search action
Shing Chiang Tan
Person information
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2025
- [j57]Lawrence Chuin Ming Liaw, Shing Chiang Tan, Pey Yun Goh, Chee Peng Lim:
A histogram SMOTE-based sampling algorithm with incremental learning for imbalanced data classification. Inf. Sci. 686: 121193 (2025) - 2024
- [j56]Mohammed Nasser Al-Andoli, Shing Chiang Tan, Kok-Swee Sim, Pey Yun Goh, Chee Peng Lim:
A Framework for Robust Deep Learning Models Against Adversarial Attacks Based on a Protection Layer Approach. IEEE Access 12: 17522-17540 (2024) - [j55]Koon-Ming Chan, Swee-Huay Heng, Syh-Yuan Tan, Shing Chiang Tan:
Comment on "Expressive Public-Key Encryption With Keyword Search: Generic Construction From KP-ABE and an Efficient Scheme Over Prime-Order Groups". IEEE Access 12: 91551-91555 (2024) - [j54]Lawrence Chuin Ming Liaw, Shing Chiang Tan, Pey Yun Goh, Chee Peng Lim:
Cervical cancer classification using sparse stacked autoencoder and fuzzy ARTMAP. Neural Comput. Appl. 36(22): 13895-13913 (2024) - [c22]Koon-Ming Chan, Swee-Huay Heng, Syh-Yuan Tan, Shing Chiang Tan:
K-Resilient Public Key Authenticated Encryption with Keyword Search. SECRYPT 2024: 381-388 - 2023
- [j53]Mohammed Nasser Al-Andoli, Shing Chiang Tan, Kok-Swee Sim, Manjeevan Seera, Chee Peng Lim:
A Parallel Ensemble Learning Model for Fault Detection and Diagnosis of Industrial Machinery. IEEE Access 11: 39866-39878 (2023) - [j52]Mohammed Nasser Al-Andoli, Kok-Swee Sim, Shing Chiang Tan, Pey Yun Goh, Chee Peng Lim:
An Ensemble-Based Parallel Deep Learning Classifier With PSO-BP Optimization for Malware Detection. IEEE Access 11: 76330-76346 (2023) - [j51]Mohammed Nasser Al-Andoli, Shing Chiang Tan, Kok-Swee Sim, Pey Yun Goh, Chee Peng Lim:
An ensemble deep learning classifier stacked with fuzzy ARTMAP for malware detection. J. Intell. Fuzzy Syst. 44(6): 10477-10493 (2023) - [j50]Grace Yee Lin Ng, Kim Loon Ang, Shing Chiang Tan, Chia Sui Ong, Yun Fong Ngeow:
Optimization of MLVA loci combination using metaheuristic methods. J. Intell. Fuzzy Syst. 45(6): 12123-12142 (2023) - [c21]Grace Yee Lin Ng, Chia Sui Ong, Shing Chiang Tan:
A Multiclass Method for Selecting Differentially-Expressed and Cell-Type-Discriminative Genes from scRNA-Seq Data. ICCBB 2023: 11-16 - 2022
- [j49]Koon-Ming Chan, Swee-Huay Heng, Wei-Chuen Yau, Shing Chiang Tan:
Trapdoor Privacy in Public Key Encryption With Keyword Search: A Review. IEEE Access 10: 21584-21598 (2022) - [j48]Mohammed Nasser Al-Andoli, Shing Chiang Tan, Wooi Ping Cheah:
Parallel stacked autoencoder with particle swarm optimization for community detection in complex networks. Appl. Intell. 52(3): 3366-3386 (2022) - [j47]Mohammed Nasser Al-Andoli, Shing Chiang Tan, Kok-Swee Sim, Chee Peng Lim, Pey Yun Goh:
Parallel Deep Learning with a hybrid BP-PSO framework for feature extraction and malware classification. Appl. Soft Comput. 131: 109756 (2022) - [j46]Mohammed Nasser Al-Andoli, Shing Chiang Tan, Wooi Ping Cheah:
Distributed parallel deep learning with a hybrid backpropagation-particle swarm optimization for community detection in large complex networks. Inf. Sci. 600: 94-117 (2022) - 2021
- [j45]Chean Khim Toa, Kok-Swee Sim, Shing Chiang Tan:
Electroencephalogram-Based Attention Level Classification Using Convolution Attention Memory Neural Network. IEEE Access 9: 58870-58881 (2021) - [j44]Mohammed Nasser Al-Andoli, Shing Chiang Tan, Wooi Ping Cheah, Sin Yin Tan:
A Review on Community Detection in Large Complex Networks from Conventional to Deep Learning Methods: A Call for the Use of Parallel Meta-Heuristic Algorithms. IEEE Access 9: 96501-96527 (2021) - [j43]Zheng You Lim, Kok-Swee Sim, Shing Chiang Tan:
Metric Learning Based Convolutional Neural Network for Left-Right Brain Dominance Classification. IEEE Access 9: 120551-120566 (2021) - [j42]Mohammed Nasser Al-Andoli, Wooi Ping Cheah, Shing Chiang Tan:
Deep learning-based community detection in complex networks with network partitioning and reduction of trainable parameters. J. Ambient Intell. Humaniz. Comput. 12(2): 2527-2545 (2021) - [j41]Mohammed Nasser Al-Andoli, Wooi Ping Cheah, Shing Chiang Tan:
Deep autoencoder-based community detection in complex networks with particle swarm optimization and continuation algorithms. J. Intell. Fuzzy Syst. 40(3): 4517-4533 (2021) - [j40]Hue Yee Chong, Shing Chiang Tan, Hwa Jen Yap:
Hybridization of harmonic search algorithm in training radial basis function with dynamic decay adjustment for condition monitoring. Soft Comput. 25(15): 10221-10235 (2021) - [j39]Hue Yee Chong, Hwa Jen Yap, Shing Chiang Tan, Keem Siah Yap, Shen Yuong Wong:
Advances of metaheuristic algorithms in training neural networks for industrial applications. Soft Comput. 25(16): 11209-11233 (2021) - [c20]Chean Khim Toa, Kok-Swee Sim, Shing Chiang Tan:
Emotiv Insight with Convolutional Neural Network: Visual Attention Test Classification. ICCCI (CCIS Volume) 2021: 348-357 - 2020
- [j38]Junzo Watada, Arunava Roy, Bo Wang, Shing Chiang Tan, Bing Xu:
An Artificial Bee Colony-Based Double Layered Neural Network Approach for Solving Quadratic Bi-Level Programming Problems. IEEE Access 8: 21549-21564 (2020) - [j37]Fawaz Sammani, Kok-Swee Sim, Shing Chiang Tan:
Encoding Rich Frequencies for Classification of Stroke Patients EEG Signals. IEEE Access 8: 135811-135820 (2020) - [j36]Mahmoud Elsayed, Kok-Swee Sim, Shing Chiang Tan:
A Novel Approach to Objectively Quantify the Subjective Perception of Pain Through Electroencephalogram Signal Analysis. IEEE Access 8: 199920-199930 (2020) - [c19]Kai Liang Lew, Kok-Swee Sim, Shing Chiang Tan, Fazly Salleh Abas:
3D Kinematics of Upper Limb Functional Assessment Using HTC Vive in Unreal Engine 4. ICCCI (CCIS Volume) 2020: 264-275
2010 – 2019
- 2019
- [j35]Pey Yun Goh, Shing Chiang Tan, Wooi Ping Cheah, Chee Peng Lim:
Adaptive rough radial basis function neural network with prototype outlier removal. Inf. Sci. 505: 127-143 (2019) - [j34]Yit Yin Wee, Wooi Ping Cheah, Shing Chiang Tan, Kuokkwee Wee:
An evaluation of the role of fuzzy cognitive maps and Bayesian belief networks in the development of causal knowledge systems. J. Intell. Fuzzy Syst. 37(2): 1905-1920 (2019) - [j33]Kian-Ming Lim, Alan Wee-Chiat Tan, Chin-Poo Lee, Shing Chiang Tan:
Isolated sign language recognition using Convolutional Neural Network hand modelling and Hand Energy Image. Multim. Tools Appl. 78(14): 19917-19944 (2019) - [c18]Sin Yin Tan, Wooi Ping Cheah, Shing Chiang Tan:
Integrating Deep Learning and Bayesian Reasoning. DependSys 2019: 119-130 - 2018
- [j32]Manjeevan Seera, Chee Peng Lim, Shing Chiang Tan:
A hybrid FAM-CART model for online data classification. Comput. Intell. 34(2): 562-581 (2018) - [j31]Chong Tak Yaw, Shen Yuong Wong, Keem Siah Yap, Hwa Jen Yap, Ungku Anisa Ungku Amirulddin, Shing Chiang Tan:
An ELM based multi-agent system and its applications to power generation. Intell. Decis. Technol. 12(2): 163-171 (2018) - [j30]Shing Chiang Tan, Shuming Wang, Junzo Watada:
A self-adaptive class-imbalance TSK neural network with applications to semiconductor defects detection. Inf. Sci. 427: 1-17 (2018) - [j29]Yit Yin Wee, Wooi Ping Cheah, Shih Yin Ooi, Shing Chiang Tan, Kuokkwee Wee:
Application of Bayesian belief networks and fuzzy cognitive maps in intrusion analysis. J. Intell. Fuzzy Syst. 35(1): 111-122 (2018) - [j28]Shih Yin Ooi, Shing Chiang Tan, Wooi Ping Cheah:
Temporal Sleuth Machine with decision tree for temporal classification. Soft Comput. 22(24): 8077-8095 (2018) - [c17]Pey Yun Goh, Shing Chiang Tan, Wooi Ping Cheah:
A Revisit of Reducing Hidden Nodes in a Radial Basis Function Neural Network with Histogram. ICONIP (2) 2018: 722-731 - 2017
- [j27]Chong Tak Yaw, Shen Yuong Wong, Keem Siah Yap, Hwa Jen Yap, Ungku Anisa Ungku Amirulddin, Shing Chiang Tan:
An ELM based Multi-Agent System and its applications to power generation. Intell. Decis. Technol. 11(3): 297-305 (2017) - [j26]Bee Yan Hiew, Shing Chiang Tan, Way-Soong Lim:
A double-elimination-tournament-based competitive co-evolutionary artificial neural network classifier. Neurocomputing 249: 345-356 (2017) - [j25]Kian-Ming Lim, Alan W. C. Tan, Shing Chiang Tan:
A four dukkha state-space model for hand tracking. Neurocomputing 267: 311-319 (2017) - [j24]Pey Yun Goh, Shing Chiang Tan, Wooi Ping Cheah, Chee Peng Lim:
Reducing the complexity of an adaptive radial basis function network with a histogram algorithm. Neural Comput. Appl. 28(S-1): 365-378 (2017) - [j23]Shih Yin Ooi, Shing Chiang Tan, Wooi Ping Cheah:
Temporal sampling forest (TS - F): an ensemble temporal learner. Soft Comput. 21(23): 7039-7052 (2017) - [c16]Lik Xun Yuan, Shing Chiang Tan, Pey Yun Goh, Chee Peng Lim, Junzo Watada:
Fuzzy ARTMAP with Binary Relevance for Multi-label Classification. KES-IDT (2) 2017: 127-135 - [c15]Junzo Watada, Shing Chiang Tan, Yoshiyuki Matsumoto, Pandian Vasant:
Rough Set-Based Text Mining from a Large Data Repository of Experts' Diagnoses for Power Systems. KES-IDT (2) 2017: 136-144 - 2016
- [j22]Kian-Ming Lim, Alan W. C. Tan, Shing Chiang Tan:
A feature covariance matrix with serial particle filter for isolated sign language recognition. Expert Syst. Appl. 54: 208-218 (2016) - [j21]Bee Yan Hiew, Shing Chiang Tan, Way-Soong Lim:
Intra-specific competitive co-evolutionary artificial neural network for data classification. Neurocomputing 185: 220-230 (2016) - [j20]Kian-Ming Lim, Alan W. C. Tan, Shing Chiang Tan:
Block-based histogram of optical flow for isolated sign language recognition. J. Vis. Commun. Image Represent. 40: 538-545 (2016) - [c14]Shih Yin Ooi, Shing Chiang Tan, Wooi Ping Cheah:
Classifying Human Activities with Temporal Extension of Random Forest. ICONIP (4) 2016: 3-10 - [c13]Pey Yun Goh, Shing Chiang Tan, Wooi Ping Cheah:
Anomaly Detection Using Correctness Matching Through a Neighborhood Rough Set. ICONIP (3) 2016: 434-441 - [c12]Shing Chiang Tan, Chee Peng Lim, Junzo Watada:
A Memetic Fuzzy ARTMAP by a Grammatical Evolution Approach. KES-IDT (1) 2016: 447-456 - 2015
- [j19]Yit Yin Wee, Wooi Ping Cheah, Shing Chiang Tan, Kuokkwee Wee:
A method for root cause analysis with a Bayesian belief network and fuzzy cognitive map. Expert Syst. Appl. 42(1): 468-487 (2015) - [j18]Chin-Poo Lee, Alan W. C. Tan, Shing Chiang Tan:
Gait recognition with Transient Binary Patterns. J. Vis. Commun. Image Represent. 33: 69-77 (2015) - [j17]Manjeevan Seera, Chee Peng Lim, Shing Chiang Tan, Chu Kiong Loo:
A hybrid FAM-CART model and its application to medical data classification. Neural Comput. Appl. 26(8): 1799-1811 (2015) - [j16]Shen Yuong Wong, Keem Siah Yap, Hwa Jen Yap, Shing Chiang Tan:
A Truly Online Learning Algorithm using Hybrid Fuzzy ARTMAP and Online Extreme Learning Machine for Pattern Classification. Neural Process. Lett. 42(3): 585-602 (2015) - [j15]Shing Chiang Tan, Junzo Watada, Zuwairie Ibrahim, Marzuki Khalid:
Evolutionary Fuzzy ARTMAP Neural Networks for Classification of Semiconductor Defects. IEEE Trans. Neural Networks Learn. Syst. 26(5): 933-950 (2015) - [j14]Sheng Yuong Wong, Keem Siah Yap, Hwa Jen Yap, Shing Chiang Tan, Siow-Wee Chang:
On Equivalence of FIS and ELM for Interpretable Rule-Based Knowledge Representation. IEEE Trans. Neural Networks Learn. Syst. 26(7): 1417-1430 (2015) - [c11]Shing Chiang Tan, Chee Peng Lim:
Evolving an Adaptive Artificial Neural Network with a Gravitational Search Algorithm. KES-IDT 2015: 599-609 - 2014
- [j13]Shih Yin Ooi, Shing Chiang Tan, Wooi Ping Cheah:
Temporal Decision Tree and Interpretable Temporal Rules: J48 and Fuzzy Cognitive Maps Approach. Aust. J. Intell. Inf. Process. Syst. 14(1) (2014) - [j12]Chin-Poo Lee, Alan W. C. Tan, Shing Chiang Tan:
Time-sliced averaged motion history image for gait recognition. J. Vis. Commun. Image Represent. 25(5): 822-826 (2014) - [j11]Chin-Poo Lee, Alan W. C. Tan, Shing Chiang Tan:
Gait probability image: An information-theoretic model of gait representation. J. Vis. Commun. Image Represent. 25(6): 1489-1492 (2014) - [c10]Pey Yun Goh, Shing Chiang Tan, Wooi Ping Cheah:
A Nodes Reduction Procedure for RBFNDDA through Histogram. ICONIP (1) 2014: 127-134 - [c9]Shih Yin Ooi, Shing Chiang Tan, Wooi Ping Cheah:
Anomaly Based Intrusion Detection through Temporal Classification. ICONIP (3) 2014: 612-619 - [c8]Zhigang Xiong, Junzo Watada, Zhenyuan Xu, Bo Wang, Shing Chiang Tan:
An Extended Fuzzy-kNN Approach to Solving Class-imbalanced Problems. IDT/IIMSS/STET 2014: 200-209 - [c7]Shing Chiang Tan, Chee Peng Lim, Manjeevan Seera:
An Online Transfer Learning RBF Neural Network for Cross Domain Data Classification. IDT/IIMSS/STET 2014: 210-218 - 2013
- [j10]Chin-Poo Lee, Alan W. C. Tan, Shing Chiang Tan:
Gait recognition via optimally interpolated deformable contours. Pattern Recognit. Lett. 34(6): 663-669 (2013) - 2011
- [j9]Shing Chiang Tan, Chee Peng Lim:
Fuzzy ARTMAP and hybrid evolutionary programming for pattern classification. J. Intell. Fuzzy Syst. 22(2-3): 57-68 (2011) - [j8]Shing Chiang Tan, Chee Peng Lim:
Integration of supervised ART-based neural networks with a hybrid genetic algorithm. Soft Comput. 15(2): 205-219 (2011) - [c6]Shing Chiang Tan, Zuwairie Ibrahim, Wen Jau Lee, Junzo Watada, Marzuki Khalid, Lim Chun Chew:
Learning with imbalanced datasets using fuzzy ARTMAP-based neural network models. FUZZ-IEEE 2011: 1084-1089 - [c5]Phit Ling Tan, Shing Chiang Tan, Chee Peng Lim, Swee Eng Khor:
A Modified Two-Stage SVM-RFE Model for Cancer Classification Using Microarray Data. ICONIP (1) 2011: 668-675 - 2010
- [j7]Shing Chiang Tan, Chee Peng Lim:
Evolutionary Fuzzy ARTMAP Neural Networks and their Applications to Fault Detection and Diagnosis. Neural Process. Lett. 31(3): 219-242 (2010)
2000 – 2009
- 2009
- [j6]Chin Loo, Shing Chiang Tan, Chee Peng Lim:
Fuzzy ARTMAP and a Hybrid Chaos Genetic Algorithm for Medical Pattern Classification. Aust. J. Intell. Inf. Process. Syst. 10(4) (2009) - [j5]Shing Chiang Tan, M. V. C. Rao, Chee Peng Lim:
An online pruning strategy for supervised ARTMAP-based neural networks. Neural Comput. Appl. 18(4): 387-395 (2009) - [c4]Shing Chiang Tan, Chee Peng Lim, Kay Sin Tan, Jose C. Navarro:
An Evolutionary Artificial Neural Network for Medical Pattern Classification. ICONIP (2) 2009: 475-482 - [c3]Shing Chiang Tan, Chee Peng Lim:
Improving the Performance of Fuzzy ARTMAP with Hybrid Evolutionary Programming: An Experimental Study. ICONIP (2) 2009: 593-600 - 2008
- [j4]Shing Chiang Tan, M. V. C. Rao, Chee Peng Lim:
Fuzzy ARTMAP dynamic decay adjustment: An improved fuzzy ARTMAP model with a conflict resolving facility. Appl. Soft Comput. 8(1): 543-554 (2008) - [j3]Shing Chiang Tan, M. V. C. Rao, Chee Peng Lim:
A hybrid neural network classifier combining ordered fuzzy ARTMAP and the dynamic decay adjustment algorithm. Soft Comput. 12(8): 765-775 (2008) - [p2]Lakhmi C. Jain, Shing Chiang Tan, Chee Peng Lim:
An Introduction to Computational Intelligence Paradigms. Computational Intelligence Paradigms 2008: 1-23 - 2007
- [j2]Shing Chiang Tan, Chee Peng Lim, M. V. C. Rao:
A hybrid neural network model for rule generation and its application to process fault detection and diagnosis. Eng. Appl. Artif. Intell. 20(2): 203-213 (2007) - [c2]Shing Chiang Tan, M. V. C. Rao, Chee Peng Lim:
A Mutation-Based Evolving Neural Network Model and Its Application to Condition Monitoring. IIH-MSP 2007: 65-68 - [p1]Lakhmi C. Jain, Shing Chiang Tan, Chee Peng Lim:
Introduction to Evolutionary Computing in System Design. Advances in Evolutionary Computing for System Design 2007: 1-9 - 2006
- [j1]Shing Chiang Tan, M. V. C. Rao, Chee Peng Lim:
On the reduction of complexity in the architecture of fuzzy ARTMAP with dynamic decay adjustment. Neurocomputing 69(16-18): 2456-2460 (2006) - 2004
- [c1]Shing Chiang Tan, M. V. C. Rao, Chee Peng Lim:
An Adaptive Fuzzy Min-Max Conflict-Resolving Classifier. WSC 2004: 65-76
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 2024-10-07 22:17 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint