default search action
Cheng-Chew Lim
Person information
- affiliation: University of Adelaide, School of Electrical and Electronic Engineering, SA, Australia
SPARQL queries
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [j114]Huabin Chen, Peng Shi, Cheng-Chew Lim:
Stability analysis for nonautonomous impulsive hybrid stochastic delay systems. Syst. Control. Lett. 187: 105785 (2024) - [j113]Bing Yan, Yuan Sun, Peng Shi, Cheng-Chew Lim:
Event and Learning-Based Resilient Formation Control for Multiagent Systems Under DoS Attacks. IEEE Trans. Syst. Man Cybern. Syst. 54(8): 4876-4886 (2024) - [i3]Lachlan Simpson, Kyle Millar, Adriel Cheng, Cheng-Chew Lim, Hong Gunn Chew:
Probabilistic Lipschitzness and the Stable Rank for Comparing Explanation Models. CoRR abs/2402.18863 (2024) - [i2]Lachlan Simpson, Federico Costanza, Kyle Millar, Adriel Cheng, Cheng-Chew Lim, Hong Gunn Chew:
Algebraic Adversarial Attacks on Integrated Gradients. CoRR abs/2407.16233 (2024) - 2023
- [j112]Kamal Mammadov, Cheng-Chew Lim, Peng Shi:
The holographic principle for the differential game of active target defence. Int. J. Control 96(11): 2725-2736 (2023) - [j111]Yuan Sun, Bing Yan, Peng Shi, Cheng-Chew Lim:
Consensus for Multiagent Systems Under Output Constraints and Unknown Control Directions. IEEE Syst. J. 17(1): 1035-1044 (2023) - [j110]Huabin Chen, Peng Shi, Cheng-Chew Lim:
Stability Analysis of Time-Varying Neutral Stochastic Hybrid Delay System. IEEE Trans. Autom. Control. 68(9): 5576-5583 (2023) - [j109]Zhi Lian, Peng Shi, Cheng-Chew Lim, Xin Yuan:
Fuzzy-Model-Based Lateral Control for Networked Autonomous Vehicle Systems Under Hybrid Cyber-Attacks. IEEE Trans. Cybern. 53(4): 2600-2609 (2023) - [j108]Zhi Lian, Peng Shi, Cheng-Chew Lim:
Adaptive Resilient Control for Cyber-Physical Systems Under Cyberattack and Input Saturation. IEEE Trans. Ind. Informatics 19(5): 6513-6524 (2023) - [j107]Yang Fei, Peng Shi, Cheng-Chew Lim:
Robust and Collision-Free Formation Control of Multiagent Systems With Limited Information. IEEE Trans. Neural Networks Learn. Syst. 34(8): 4286-4295 (2023) - [c50]Lachlan Simpson, Kyle Millar, Adriel Cheng, Hong Gunn Chew, Cheng-Chew Lim:
A Testbed for Automating and Analysing Mobile Devices and Their Applications. ICMLC 2023: 201-208 - [i1]Lachlan Simpson, Kyle Millar, Adriel Cheng, Hong Gunn Chew, Cheng-Chew Lim:
A Testbed for Automating and Analysing Mobile Devices and their Applications. CoRR abs/2309.08158 (2023) - 2022
- [j106]Kamal Mammadov, Cheng-Chew Lim, Peng Shi:
A state-feedback Nash equilibrium for the general Target-Attacker-Defender differential game of degree in arbitrary dimensions. Int. J. Control 95(1): 93-103 (2022) - [j105]Yuan Sun, Peng Shi, Cheng-Chew Lim:
Event-triggered sliding mode scaled consensus control for multi-agent systems. J. Frankl. Inst. 359(2): 981-998 (2022) - [j104]Yuan Sun, Peng Shi, Cheng-Chew Lim:
Adaptive consensus control for output-constrained nonlinear multi-agent systems with actuator faults. J. Frankl. Inst. 359(9): 4216-4232 (2022) - [j103]Bing Yan, Peng Shi, Cheng-Chew Lim, Chengfu Wu:
Robust Formation Control for Multiagent Systems Based on Adaptive Observers. IEEE Syst. J. 16(2): 3139-3150 (2022) - [j102]Bing Yan, Peng Shi, Cheng-Chew Lim:
Robust Formation Control for Nonlinear Heterogeneous Multiagent Systems Based on Adaptive Event-Triggered Strategy. IEEE Trans Autom. Sci. Eng. 19(4): 2788-2800 (2022) - [j101]Jie Han, Chunhua Yang, Cheng-Chew Lim, Xiaojun Zhou, Peng Shi:
Stackelberg Game Approach for Robust Optimization With Fuzzy Variables. IEEE Trans. Fuzzy Syst. 30(1): 258-269 (2022) - [j100]Huabin Chen, Cheng-Chew Lim, Peng Shi:
Robust ℋ∞-Based Control for Uncertain Stochastic Fuzzy Switched Time-Delay Systems via Integral Sliding Mode Strategy. IEEE Trans. Fuzzy Syst. 30(2): 382-396 (2022) - [j99]Zhi Lian, Peng Shi, Cheng-Chew Lim:
Dynamic Hybrid-Triggered-Based Fuzzy Control for Nonlinear Networks Under Multiple Cyberattacks. IEEE Trans. Fuzzy Syst. 30(9): 3940-3951 (2022) - [j98]Yutong Liu, Peng Shi, Hongjun Yu, Cheng-Chew Lim:
Event-Triggered Probability-Driven Adaptive Formation Control for Multiple Elliptical Agents. IEEE Trans. Syst. Man Cybern. Syst. 52(1): 645-654 (2022) - [c49]Kamal Mammadov, Cheng-Chew Lim, Peng Shi:
Generalising the capture the flag scenario to active target defence. ANZCC 2022: 120-125 - 2021
- [j97]Muhammad Saeed Aslam, Peng Shi, Cheng-Chew Lim:
Self-adapting variable step size strategies for active noise control systems with acoustic feedback. Autom. 123: 109354 (2021) - [j96]Kamal Mammadov, Cheng-Chew Lim, Peng Shi:
State-feedback optimal strategies for the differential game of cooperative target defence: a geometric approach. Int. J. Control 94(10): 2615-2622 (2021) - [j95]Zhi Lian, Peng Shi, Cheng-Chew Lim:
Hybrid-triggered interval type-2 fuzzy control for networked systems under attacks. Inf. Sci. 567: 332-347 (2021) - [j94]Huabin Chen, Cheng-Chew Lim, Peng Shi:
Stability Analysis for Stochastic Neutral Switched Systems with Time-Varying Delay. SIAM J. Control. Optim. 59(1): 24-49 (2021) - [j93]Yang Fei, Peng Shi, Cheng-Chew Lim:
Robust Formation Control for Multi-Agent Systems: A Reference Correction Based Approach. IEEE Trans. Circuits Syst. I Regul. Pap. 68(6): 2616-2625 (2021) - [j92]Yutong Liu, Peng Shi, Cheng-Chew Lim, Hongjun Yu:
A New Approach of Formation Control for Multi-Agent Systems With Environmental Changes. IEEE Trans. Circuits Syst. I Regul. Pap. 68(8): 3449-3459 (2021) - [j91]Jie Han, Chunhua Yang, Cheng-Chew Lim, Xiaojun Zhou, Peng Shi:
Stackelberg-Nash Game Approach for Constrained Robust Optimization With Fuzzy Variables. IEEE Trans. Fuzzy Syst. 29(11): 3519-3531 (2021) - [j90]Dhong Hun Lee, Sang Su Lee, Choon Ki Ahn, Peng Shi, Cheng-Chew Lim:
Finite Distribution Estimation-Based Dynamic Window Approach to Reliable Obstacle Avoidance of Mobile Robot. IEEE Trans. Ind. Electron. 68(10): 9998-10006 (2021) - [j89]Zhipei Hu, Feiqi Deng, Peng Shi, Cheng-Chew Lim:
A New Approach to Characterize Successive Packet Losses in Stochastic Networked Systems. IEEE Trans. Syst. Man Cybern. Syst. 51(1): 552-560 (2021) - [j88]Meng Li, Yong Chen, Cheng-Chew Lim:
Stability Analysis of Complex Network Control System With Dynamical Topology and Delays. IEEE Trans. Syst. Man Cybern. Syst. 51(11): 7228-7237 (2021) - [c48]Yang Fei, Xin Yuan, Peng Shi, Cheng-Chew Lim:
Neural-Based Hierarchical Formation Control of Mixed-Order Multi-Agent Systems. ICMLC 2021: 1-6 - [c47]Kyle Millar, Adriel Cheng, Hong Gunn Chew, Cheng-Chew Lim:
Clustering Network-Connected Devices Using Affiliation Graphs. ICMLC 2021: 1-7 - [c46]Kyle Millar, Lachlan Simpson, Adriel Cheng, Hong Gunn Chew, Cheng-Chew Lim:
Detecting Botnet Victims Through Graph-Based Machine Learning. ICMLC 2021: 1-6 - [c45]Yuan Sun, Peng Shi, Cheng-Chew Lim:
Adaptive neural network consensus control of multi-robot systems with output constraints. ISR 2021: 288-291 - 2020
- [j87]Syed Imranul Islam, Cheng-Chew Lim, Peng Shi:
Robust fault detection of T-S fuzzy systems with time-delay using fuzzy functional observer. Fuzzy Sets Syst. 392: 1-23 (2020) - [j86]Hongjun Yu, Peng Shi, Cheng-Chew Lim, Yutong Liu:
Probability-triggered formation control with adaptive roles. Int. J. Control 93(8): 1989-2000 (2020) - [j85]Jie Han, Chunhua Yang, Cheng-Chew Lim, Xiaojun Zhou, Peng Shi, Weihua Gui:
Power scheduling optimization under single-valued neutrosophic uncertainty. Neurocomputing 382: 12-20 (2020) - [j84]Yang Fei, Peng Shi, Cheng-Chew Lim:
Neural network adaptive dynamic sliding mode formation control of multi-agent systems. Int. J. Syst. Sci. 51(11): 2025-2040 (2020) - [j83]Yueyuan Zhang, Cheng-Chew Lim, Fei Liu:
Discrete-time fault tolerant control for semi-Markov jump systems with finite sojourn-time. J. Frankl. Inst. 357(1): 1-18 (2020) - [j82]Xiuli He, Peng Shi, Cheng-Chew Lim:
Stochastic synchronization of complex networks via aperiodically intermittent noise. J. Frankl. Inst. 357(18): 13872-13888 (2020) - [j81]Hongjun Yu, Cheng-Chew Lim, Robert A. Hunjet, Peng Shi:
Flocking and topology manipulation based on space partitioning. Robotics Auton. Syst. 124: 103328 (2020) - [j80]Sheng Chen, Cheng-Chew Lim, Peng Shi, Zhenyu Lu:
Asymptotic Consensus of Dynamical Points in a Strict Max-Convex Space and Its Applications. SIAM J. Control. Optim. 58(4): 1984-2005 (2020) - [j79]Bo Zhang, Cheng-Chew Lim, Peng Shi, Shengli Xie, Feiqi Deng:
Stabilization of a Class of Nonlinear Systems With Random Disturbance via Intermittent Stochastic Noise. IEEE Trans. Autom. Control. 65(3): 1318-1324 (2020) - [j78]Jing Xu, Yugang Niu, Cheng-Chew Lim, Peng Shi:
Memory Output-Feedback Integral Sliding Mode Control for Furuta Pendulum Systems. IEEE Trans. Circuits Syst. I Regul. Pap. 67-I(6): 2042-2052 (2020) - [j77]Yutong Liu, Peng Shi, Cheng-Chew Lim:
Collision-Free Formation Control for Multi-Agent Systems With Dynamic Mapping. IEEE Trans. Circuits Syst. II Express Briefs 67-II(10): 1984-1988 (2020) - [j76]Di Shen, Cheng-Chew Lim, Peng Shi, Piotr Bujlo:
Energy Management of Fuel Cell Hybrid Vehicle Based on Partially Observable Markov Decision Process. IEEE Trans. Control. Syst. Technol. 28(2): 318-330 (2020) - [j75]Haiyu Song, Peng Shi, Wen-An Zhang, Cheng-Chew Lim, Li Yu:
Distributed H∞ Estimation in Sensor Networks With Two-Channel Stochastic Attacks. IEEE Trans. Cybern. 50(2): 465-475 (2020) - [j74]Haiyu Song, Peng Shi, Cheng-Chew Lim, Wen-An Zhang, Li Yu:
Set-Membership Estimation for Complex Networks Subject to Linear and Nonlinear Bounded Attacks. IEEE Trans. Neural Networks Learn. Syst. 31(1): 163-173 (2020) - [j73]Huabin Chen, Peng Shi, Cheng-Chew Lim:
Synchronization Control for Neutral Stochastic Delay Markov Networks via Single Pinning Impulsive Strategy. IEEE Trans. Syst. Man Cybern. Syst. 50(12): 5406-5419 (2020) - [j72]Di Shen, Cheng-Chew Lim, Peng Shi:
Fuzzy Model Based Control for Energy Management and Optimization in Fuel Cell Vehicles. IEEE Trans. Veh. Technol. 69(12): 14674-14688 (2020) - [c44]Yang Fei, Xin Yuan, Peng Shi, Cheng-Chew Lim:
Uncertainty-Observer-Based Dynamic Sliding Mode Formation Control for Multi-Agent Systems. ICMLC 2020: 82-87 - [c43]Duong Duc Nguyen, Arvind Rajagopalan, Jijoong Kim, Cheng-Chew Lim, David Hubczenko:
Dynamic Multi-Target Assignment with Decentralised Online Learning to Achieve Multiple Synchronised Goals. ICMLC 2020: 111-117 - [c42]Kyle Millar, Adriel Cheng, Hong Gunn Chew, Cheng-Chew Lim:
Operating System Classification: A Minimalist Approach. ICMLC 2020: 143-150 - [c41]Kyle Millar, Adriel Cheng, Hong Gunn Chew, Cheng-Chew Lim:
Characterising Network-Connected Devices Using Affiliation Graphs. NOMS 2020: 1-6
2010 – 2019
- 2019
- [j71]Duong Duc Nguyen, Arvind Rajagopalan, Jijoong Kim, Cheng-Chew Lim:
Adaptive Regret Minimization for Learning Complex Team-Based Tactics. IEEE Access 7: 103019-103030 (2019) - [j70]Haiyu Song, Peng Shi, Cheng-Chew Lim, Wen-An Zhang, Li Yu:
Attack and estimator design for multi-sensor systems with undetectable adversary. Autom. 109 (2019) - [j69]Kaining Wu, Xiao-Zhen Liu, Baoqing Yang, Cheng-Chew Lim:
Mean square finite-time synchronization of impulsive stochastic delay reaction-diffusion systems. Commun. Nonlinear Sci. Numer. Simul. 79: 104899 (2019) - [j68]Jing Xu, Cheng-Chew Lim, Peng Shi:
Sliding mode control of singularly perturbed systems and its application in quad-rotors. Int. J. Control 92(6): 1325-1334 (2019) - [j67]Zhenhua Wang, Peng Shi, Cheng-Chew Lim:
Robust fault estimation observer in the finite frequency domain for descriptor systems. Int. J. Control 92(7): 1590-1599 (2019) - [j66]Hongjun Yu, Peng Shi, Cheng-Chew Lim, Dongzhe Wang:
Formation control for multi-robot systems with collision avoidance. Int. J. Control 92(10): 2223-2234 (2019) - [j65]Yueyuan Zhang, Cheng-Chew Lim, Fei Liu:
Robust control synthesis for discrete-time uncertain semi-Markov jump systems. Int. J. Syst. Sci. 50(10): 2042-2052 (2019) - [j64]Yutong Liu, Hongjun Yu, Peng Shi, Cheng-Chew Lim:
Formation control and collision avoidance for a class of multi-agent systems. J. Frankl. Inst. 356(10): 5395-5420 (2019) - [j63]Qing Sun, Cheng-Chew Lim, Peng Shi, Fei Liu:
Design and Stability of Moving Horizon Estimator for Markov Jump Linear Systems. IEEE Trans. Autom. Control. 64(3): 1109-1124 (2019) - [j62]Muhammad Saeed Aslam, Peng Shi, Cheng-Chew Lim:
Variable Threshold-Based Selective Updating Algorithms in Feed-Forward Active Noise Control Systems. IEEE Trans. Circuits Syst. I Regul. Pap. 66-I(2): 782-795 (2019) - [j61]Muhammad Saeed Aslam, Peng Shi, Cheng-Chew Lim:
Robust Active Noise Control Design by Optimal Weighted Least Squares Approach. IEEE Trans. Circuits Syst. I Regul. Pap. 66-I(10): 3955-3967 (2019) - [j60]Huabin Chen, Peng Shi, Cheng-Chew Lim:
Cluster Synchronization for Neutral Stochastic Delay Networks via Intermittent Adaptive Control. IEEE Trans. Neural Networks Learn. Syst. 30(11): 3246-3259 (2019) - [j59]Jing Xu, Peng Shi, Cheng-Chew Lim, Chenxiao Cai, Yun Zou:
Reliable Tracking Control for Under-Actuated Quadrotors With Wind Disturbances. IEEE Trans. Syst. Man Cybern. Syst. 49(10): 2059-2070 (2019) - [c40]Di Shen, Cheng-Chew Lim, Peng Shi:
Predictive Modeling and Control of Energy Demand for Hybrid Electric Vehicle Systems. ICMLC 2019: 1-6 - [c39]Daniel Gibbons, Cheng-Chew Lim, Peng Shi:
Deep Learning for Bipartite Assignment Problems. SMC 2019: 2318-2325 - 2018
- [j58]Kaining Wu, Han-Xiao Sun, Baoqing Yang, Cheng-Chew Lim:
Finite-time boundary control for delay reaction-diffusion systems. Appl. Math. Comput. 329: 52-63 (2018) - [j57]Sheng Chen, Cheng-Chew Lim, Peng Shi, Zhenyu Lu:
Synchronization control for reaction-diffusion FitzHugh-Nagumo systems with spatial sampled-data. Autom. 93: 352-362 (2018) - [j56]Yuechao Ma, Cheng-Chew Lim, Sining Li, Dongzhe Wang:
H-Infinity Control in Coherent Wind Measurement Lidar Signal Processing. Circuits Syst. Signal Process. 37(7): 2824-2836 (2018) - [j55]Xiaojun Zhou, Peng Shi, Cheng-Chew Lim, Chunhua Yang, Weihua Gui:
A dynamic state transition algorithm with application to sensor network localization. Neurocomputing 273: 237-250 (2018) - [j54]Syed Imranul Islam, Cheng-Chew Lim, Peng Shi:
Functional observer-based fuzzy controller design for continuous nonlinear systems. Int. J. Syst. Sci. 49(5): 1047-1060 (2018) - [j53]Yueyuan Zhang, Cheng-Chew Lim, Fei Liu:
Robust mixed H2/H∞ model predictive control for Markov jump systems with partially uncertain transition probabilities. J. Frankl. Inst. 355(8): 3423-3437 (2018) - [j52]Syed Imranul Islam, Cheng-Chew Lim, Peng Shi:
Functional observer based controller for stabilizing Takagi-Sugeno fuzzy systems with time-delays. J. Frankl. Inst. 355(8): 3619-3640 (2018) - [j51]Huabin Chen, Peng Shi, Cheng-Chew Lim:
Pinning impulsive synchronization for stochastic reaction-diffusion dynamical networks with delay. Neural Networks 106: 281-293 (2018) - [j50]Zhenhua Wang, Cheng-Chew Lim, Yi Shen:
Interval observer design for uncertain discrete-time linear systems. Syst. Control. Lett. 116: 41-46 (2018) - [j49]Fanbiao Li, Peng Shi, Cheng-Chew Lim, Ligang Wu:
Fault Detection Filtering for Nonhomogeneous Markovian Jump Systems via a Fuzzy Approach. IEEE Trans. Fuzzy Syst. 26(1): 131-141 (2018) - [j48]Xiaocheng Shi, Cheng-Chew Lim, Peng Shi, Shengyuan Xu:
Adaptive Neural Dynamic Surface Control for Nonstrict-Feedback Systems With Output Dead Zone. IEEE Trans. Neural Networks Learn. Syst. 29(11): 5200-5213 (2018) - [c38]Duong Duc Nguyen, Arvind Rajagopalan, Cheng-Chew Lim:
Online Versus Offline Reinforcement Learning for False Target Control Against Known Threat. ICIRA (2) 2018: 400-412 - [c37]Hongjun Yu, Cheng-Chew Lim, Robert A. Hunjet:
Enabling Energy Efficient Data Ferrying. ITNAC 2018: 1-6 - [c36]Kyle Millar, Adriel Cheng, Hong Gunn Chew, Cheng-Chew Lim:
Deep Learning for Classifying Malicious Network Traffic. PAKDD (Workshops) 2018: 156-161 - 2017
- [j47]Zhenhua Wang, Peng Shi, Cheng-Chew Lim:
H- / H∞ fault detection observer in finite frequency domain for linear parameter-varying descriptor systems. Autom. 86: 38-45 (2017) - [j46]Wenhui Liu, Cheng-Chew Lim, Peng Shi, Shengyuan Xu:
Sampled-data fuzzy control for a class of nonlinear systems with missing data and disturbances. Fuzzy Sets Syst. 306: 63-86 (2017) - [j45]Sheng Chen, Peng Shi, Cheng-Chew Lim:
Curve arclength in fuzzy metric spaces. Fuzzy Sets Syst. 313: 105-113 (2017) - [j44]Wenhui Liu, Cheng-Chew Lim, Peng Shi, Shengyuan Xu:
Observer-based tracking control for MIMO pure-feedback nonlinear systems with time-delay and input quantisation. Int. J. Control 90(11): 2433-2448 (2017) - [j43]Song Zhu, Mouquan Shen, Cheng-Chew Lim:
Robust input-to-state stability of neural networks with Markovian switching in presence of random disturbances or time delays. Neurocomputing 249: 245-252 (2017) - [j42]Wenhui Liu, Cheng-Chew Lim, Shengyuan Xu:
Adaptive control of a class of quantised nonlinearly parameterised systems with unknown control directions. Int. J. Syst. Sci. 48(5): 941-951 (2017) - [j41]Qing Sun, Cheng-Chew Lim, Fei Liu:
Constrained state estimation for stochastic jump systems: moving horizon approach. Int. J. Syst. Sci. 48(5): 1009-1021 (2017) - [j40]Yutong Liu, Hongjun Yu, Cheng-Chew Lim, Peng Shi:
Steady formation analysis on multi-robot systems. J. Control. Decis. 4(1): 12-31 (2017) - [j39]Wen-Bo Xie, Cheng-Chew Lim, Jian Zhang, Ling Huang:
New approaches to observer design and stability analysis for T-S fuzzy system with multiplicative noise. J. Frankl. Inst. 354(2): 887-901 (2017) - [j38]Yuping Zhang, Peng Shi, Cheng-Chew Lim, Hong Zhu, Jiangping Hu, Yong Zeng:
Chaotification of a class of linear switching systems based on a Shilnikov criterion. J. Frankl. Inst. 354(13): 5519-5536 (2017) - [j37]Ying Han, Cheng-Chew Lim, Sheng Chen:
Triple I fuzzy modus tollens method with inconsistent bipolarity information. J. Intell. Fuzzy Syst. 32(6): 4299-4309 (2017) - [j36]Huabin Chen, Peng Shi, Cheng-Chew Lim:
Stability analysis for neutral stochastic delay systems with Markovian switching. Syst. Control. Lett. 110: 38-48 (2017) - [j35]Yu-Long Wang, Cheng-Chew Lim, Peng Shi:
Adaptively Adjusted Event-Triggering Mechanism on Fault Detection for Networked Control Systems. IEEE Trans. Cybern. 47(8): 2299-2311 (2017) - [j34]Wenhui Liu, Cheng-Chew Lim, Peng Shi, Shengyuan Xu:
Backstepping Fuzzy Adaptive Control for a Class of Quantized Nonlinear Systems. IEEE Trans. Fuzzy Syst. 25(5): 1090-1101 (2017) - [j33]Huabin Chen, Peng Shi, Cheng-Chew Lim:
Exponential Synchronization for Markovian Stochastic Coupled Neural Networks of Neutral-Type via Adaptive Feedback Control. IEEE Trans. Neural Networks Learn. Syst. 28(7): 1618-1632 (2017) - [j32]Peng Shi, Fanbiao Li, Ligang Wu, Cheng-Chew Lim:
Neural Network-Based Passive Filtering for Delayed Neutral-Type Semi-Markovian Jump Systems. IEEE Trans. Neural Networks Learn. Syst. 28(9): 2101-2114 (2017) - [c35]Hongjun Yu, Cheng-Chew Lim, Peng Shi, Lloyd Damp, Jijoong Kim:
Collision-free path control in contest environment using circular geometric attributes. ASCC 2017: 250-255 - 2016
- [j31]Hongjun Yu, Peng Shi, Cheng-Chew Lim:
Robot formation control in stealth mode with scalable team size. Int. J. Control 89(11): 2155-2168 (2016) - [j30]Qing Sun, Cheng-Chew Lim, Peng Shi, Fei Liu:
Moving horizon estimation for Markov jump systems. Inf. Sci. 367-368: 143-158 (2016) - [j29]Jing Xu, Peng Shi, Cheng-Chew Lim, Chenxiao Cai:
A descriptor-system approach for finite-frequency H∞ control of singularly perturbed systems. Inf. Sci. 370-371: 79-91 (2016) - [j28]Qing Sun, Cheng-Chew Lim, Fei Liu:
Maximum likelihood state estimation for Markov jump systems with uncertain mode-dependent delays. J. Frankl. Inst. 353(2): 594-614 (2016) - [j27]Huabin Chen, Peng Shi, Cheng-Chew Lim, Peng Hu:
Exponential Stability for Neutral Stochastic Markov Systems With Time-Varying Delay and Its Applications. IEEE Trans. Cybern. 46(6): 1350-1362 (2016) - [j26]Yu-Long Wang, Peng Shi, Cheng-Chew Lim, Yuan Liu:
Event-Triggered Fault Detection Filter Design for a Continuous-Time Networked Control System. IEEE Trans. Cybern. 46(12): 3414-3426 (2016) - [j25]Peng Shi, Huijiao Wang, Cheng-Chew Lim:
Network-Based Event-Triggered Control for Singular Systems With Quantizations. IEEE Trans. Ind. Electron. 63(2): 1230-1238 (2016) - [j24]Mou Chen, Peng Shi, Cheng-Chew Lim:
Adaptive Neural Fault-Tolerant Control of a 3-DOF Model Helicopter System. IEEE Trans. Syst. Man Cybern. Syst. 46(2): 260-270 (2016) - [c34]Syed Imranul Islam, Cheng-Chew Lim, Peng Shi:
Existence of fuzzy functional observer of Takagi-Sugeno fuzzy model. AuCC 2016: 353-357 - [c33]Ling Huang, Cheng-Chew Lim, Ji Liu:
Time delay compensation for positive nonlinear networked control systems with bounded controls. FUZZ-IEEE 2016: 1926-1933 - [c32]Yu-Long Wang, Peng Shi, Cheng-Chew Lim:
Event-triggered fault detection for discrete-time networked control systems. IECON 2016: 6782-6787 - 2015
- [j23]Fanbiao Li, Ligang Wu, Peng Shi, Cheng-Chew Lim:
State estimation and sliding mode control for semi-Markovian jump systems with mismatched uncertainties. Autom. 51: 385-393 (2015) - [j22]Jing Xu, Chenxiao Cai, Yun Zou, Cheng-Chew Lim:
Mixed output feedback of the finite frequency H∞ control for singularly perturbed system. Int. J. Syst. Sci. 46(13): 2351-2366 (2015) - [j21]Junhu Ruan, Peng Shi, Cheng-Chew Lim, Xuping Wang:
Relief supplies allocation and optimization by interval and fuzzy number approaches. Inf. Sci. 303: 15-32 (2015) - [j20]Xiaojun Zhou, Peng Shi, Cheng-Chew Lim, Chunhua Yang, Weihua Gui:
Event based guaranteed cost consensus for distributed multi-agent systems. J. Frankl. Inst. 352(9): 3546-3563 (2015) - [j19]Fei Hu, Cheng-Chew Lim, Zudi Lu:
The retailer's optimal decision on order quantity and credit periods under two-level trade credit policy. J. Glob. Optim. 62(4): 833-852 (2015) - [j18]Mou Chen, Peng Shi, Cheng-Chew Lim:
Robust Constrained Control for MIMO Nonlinear Systems Based on Disturbance Observer. IEEE Trans. Autom. Control. 60(12): 3281-3286 (2015) - [j17]Yanyan Yin, Peng Shi, Fei Liu, Kok Lay Teo, Cheng-Chew Lim:
Robust Filtering for Nonlinear Nonhomogeneous Markov Jump Systems by Fuzzy Approximation Approach. IEEE Trans. Cybern. 45(9): 1706-1716 (2015) - [j16]Fanbiao Li, Peng Shi, Ligang Wu, Michael V. Basin, Cheng-Chew Lim:
Quantized Control Design for Cognitive Radio Networks Modeled as Nonlinear Semi-Markovian Jump Systems. IEEE Trans. Ind. Electron. 62(4): 2330-2340 (2015) - [c31]Hongjun Yu, Peng Shi, Cheng-Chew Lim:
Distributed formation control with limited sensing ranges and scalability. AuCC 2015: 318-321 - [c30]Han X. Vu, Samuel J. Davey, Sanjeev Arulampalam, Fiona K. Fletcher, Cheng-Chew Lim:
Histogram-PMHT with an evolving Poisson prior. ICASSP 2015: 4060-4064 - [c29]Hongjun Yu, Peng Shi, Cheng-Chew Lim:
Matching Based Formation Control and Analysis of Large-Scale Multi-agent Systems. SMC 2015: 173-178 - [c28]Huabin Chen, Peng Shi, Cheng-Chew Lim:
Delay-Dependent Exponential Stability for Neutral Stochastic Markov Neural Networks with Time-Varying Delay. SMC 2015: 719-724 - 2014
- [j15]Fei Hu, Cheng-Chew Lim, Zudi Lu:
Optimal production and procurement decisions in a supply chain with an option contract and partial backordering under uncertainties. Appl. Math. Comput. 232: 1225-1234 (2014) - [j14]Yanyan Yin, Peng Shi, Fei Liu, Cheng-Chew Lim:
Robust control for nonhomogeneous Markov jump processes: An application to DC motor device. J. Frankl. Inst. 351(6): 3322-3338 (2014) - [j13]Qikun Shen, Bin Jiang, Peng Shi, Cheng-Chew Lim:
Novel Neural Networks-Based Fault Tolerant Control Scheme With Fault Alarm. IEEE Trans. Cybern. 44(11): 2190-2201 (2014) - [j12]Qikun Shen, Peng Shi, Tianping Zhang, Cheng-Chew Lim:
Novel Neural Control for a Class of Uncertain Pure-Feedback Systems. IEEE Trans. Neural Networks Learn. Syst. 25(4): 718-727 (2014) - [c27]Samuel J. Davey, Han X. Vu, Sanjeev Arulampalam, Fiona K. Fletcher, Cheng-Chew Lim:
Clutter mapping for Histogram PMHT. SSP 2014: 153-156 - 2011
- [j11]Adriel Cheng, Cheng-Chew Lim:
Markov modelling and parameterisation of genetic evolutionary test generations. J. Glob. Optim. 51(4): 743-751 (2011) - [j10]Hyukjin Lee, Cheng-Chew Lim, Jinho Choi:
A refined MAC protocol with multipacket reception for wireless networks. Wirel. Commun. Mob. Comput. 11(9): 1275-1286 (2011) - 2010
- [j9]Hooman Nikmehr, Braden Phillips, Cheng-Chew Lim:
A novel implementation of radix-4 floating-point division/square-root using comparison multiples. Comput. Electr. Eng. 36(5): 850-863 (2010) - [j8]Xiaoxi Xu, Cheng-Chew Lim:
Modeling Interrupts for Software-Based System-on-Chip Verification. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 29(6): 993-997 (2010) - [c26]Adam Burdeniuk, Kiet N. To, Cheng-Chew Lim, Michael J. Liebelt:
An Event-Assisted Sequencer to Accelerate Matrix Algorithms. DELTA 2010: 158-163
2000 – 2009
- 2008
- [j7]Xiaoxi Xu, Cheng-Chew Lim:
Using Transfer-Resource Graph for Software-Based Verification of System-on-Chip. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 27(7): 1315-1328 (2008) - [j6]Jinho Choi, Cheng-Chew Lim:
A Cholesky Factorization Based Approach for Blind FIR Channel Identification. IEEE Trans. Signal Process. 56(4): 1730-1735 (2008) - [c25]Adriel Cheng, Cheng-Chew Lim, Yihe Sun, Hu He, Zhixiong Zhou, Ting Lei:
Using Genetic Evolutionary Software Application Testing to Verify a DSP SoC. DELTA 2008: 20-25 - [c24]Xiaoxi Xu, Cheng-Chew Lim, Michael J. Liebelt:
Positioning test-benches and test-programs in interaction-oriented system-on-chip verification. HLDVT 2008: 3-10 - 2007
- [j5]Hooman Nikmehr, Braden Phillips, Cheng-Chew Lim:
A Fast Radix-4 Floating-Point Divider with Quotient Digit Selection by Comparison Multiples. Comput. J. 50(1): 81-92 (2007) - 2006
- [j4]Hooman Nikmehr, Braden Phillips, Cheng-Chew Lim:
Fast Decimal Floating-Point Division. IEEE Trans. Very Large Scale Integr. Syst. 14(9): 951-961 (2006) - [c23]Y. Zhu, Said F. Al-Sarawi, Cheng-Chew Lim, Michael J. Liebelt:
Fourth-Order Discrete-Time Variable Centre Frequency Bandpass Sigma-Delta Modulator. APCCAS 2006: 820-823 - [c22]Justin Xu, Cheng-Chew Lim:
Exploiting Concurrency in System-on-Chip Verification. APCCAS 2006: 836-839 - [c21]Adriel Cheng, Atanas N. Parashkevov, Cheng-Chew Lim:
Coverage Measurement for Software Application Testing using Partially Ordered Domains and Symbolic Trajectory Evaluation Techniques. DELTA 2006: 481-487 - [c20]Joongho Choi, Jinup Lim, Cheng-Chew Lim:
A low-voltage operational amplifier with high slew-rate for sigma-delta modulators. ISCAS 2006 - [c19]Justin Xu, Cheng-Chew Lim:
Modelling Heterogeneous Interactions in SoC Verification. VLSI-SoC 2006: 98-103 - [c18]Tommy Kit-Ming Chee, Cheng-Chew Lim, Jinho Choi:
Channel Prediction Using Lumpable Finite-State Markov Channels in OFDMA Systems. VTC Spring 2006: 1560-1564 - 2005
- [c17]Adriel Cheng, Cheng-Chew Lim, Atanas N. Parashkevov:
A software test program generator for verifying system-on-chips. HLDVT 2005: 79-86 - 2004
- [j3]Nariman Habili, Cheng-Chew Lim, Alireza Moini:
Segmentation of the face and hands in sign language video sequences using color and motion cues. IEEE Trans. Circuits Syst. Video Technol. 14(8): 1086-1097 (2004) - [j2]Jinho Choi, Seong Rag Kim, Cheng-Chew Lim:
Receivers with chip-level decision feedback equalizer for CDMA downlink channels. IEEE Trans. Wirel. Commun. 3(1): 300-314 (2004) - [c16]Adriel Cheng, Atanas N. Parashkevov, Cheng-Chew Lim:
Coverage Measurement for Software Application Level Verification using Symbolic Trajectory Evaluation Techniques. DELTA 2004: 237-244 - 2003
- [c15]Hooman Nikmehr, Cheng-Chew Lim:
A New On-the-fly Summation Algorithm. Asia-Pacific Computer Systems Architecture Conference 2003: 258-267 - [c14]Agus Santoso, Jinho Choi, Cheng-Chew Lim, Branka Vucetic:
A chip level decision feedback equalizer for CDMA downlink channel with the Alamouti transmit diversity scheme. PIMRC 2003: 1322-1326 - 2001
- [j1]Andrew Beaumont-Smith, John Tsimbinos, Cheng-Chew Lim, W. Marwood:
A VLSI chip implementation of an A/D converter error table compensator. Comput. Stand. Interfaces 23(2): 111-122 (2001) - [c13]Andrew Beaumont-Smith, Cheng-Chew Lim:
Parallel Prefix Adder Design. IEEE Symposium on Computer Arithmetic 2001: 218- - [c12]Hong Gunn Chew, Robert E. Bogner, Cheng-Chew Lim:
Dual ν-support vector machine with error rate and training size biasing. ICASSP 2001: 1269-1272 - [c11]Nariman Habili, Cheng-Chew Lim, Alireza Moini:
Hand And Face Segmentation Using Motion And Color Cues In Digital Image Sequences. ICME 2001 - [c10]Jee G. Lim, Cheng-Chew Lim:
A parallel architecture for estimating 4th-order cumulants. ISCAS (4) 2001: 322-325 - 2000
- [c9]Michael J. Liebelt, Cheng-Chew Lim:
A method for determining whether asynchronous circuits are self-checking. Asian Test Symposium 2000: 472-477
1990 – 1999
- 1999
- [c8]Andrew Beaumont-Smith, Neil Burgess, S. Lefrere, Cheng-Chew Lim:
Reduced Latency IEEE Floating-Point Standard Adder Architectures. IEEE Symposium on Computer Arithmetic 1999: 35- - [c7]E. W. Choong, Cheng-Chew Lim:
Elementary motion detection with selective attention. KES 1999: 365-368 - [c6]E. W. Chong, Cheng-Chew Lim, Peter Lozo:
Neural model of visual selective attention for automatic translation invariant object recognition in cluttered images. KES 1999: 373-376 - [c5]K. To, Cheng-Chew Lim, Andrew Beaumont-Smith, Michael J. Liebelt, W. Marwood:
An array processor architecture for support vector learning. KES 1999: 377-380 - 1996
- [c4]Peter Lozo, Cheng-Chew Lim:
Neural circuit for object recognition in complex and cluttered visual images. ANZIIS 1996: 254-257 - 1995
- [c3]Sanjay K. Mazumdar, Cheng-Chew Lim:
Investigation of stability and convergence issues for an enhanced model reference neural adaptive control scheme. Electronic Technology Directions 1995: 78-84 - [c2]Sanjay K. Mazumdar, Cheng-Chew Lim:
The application of neural networks to anti-skid brake system design. ICNN 1995: 2409-2414 - 1991
- [c1]Cheng-Chew Lim, Lijun Yao, Wei Zhao:
A comparative study of three token ring protocols for real-time communications. ICDCS 1991: 308-317
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 21:18 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint