VLDB 2026 Research / reviewers in the wild / expert
Boomipalagan Kaviarasan
dblp:163/0627 · also B. Kaviarasan 0001
· DBLP profile ↗
20ranked-venue papers
6as first author
8since 2021 · last 2026
0000-0002-2837-9994ORCID · verified
Domains — the database's venue-derived domains; a paper can count in several
Artificial intelligence and machine learning · 14 · 4 first-author · 5 since 2021Human-computer interaction and ubiquitous computing · 5 · 2 first-author · 3 since 2021Graphics, computer vision, multimedia, augmented reality and games · 1
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2026 | Adaptive event controller for fuzzy system under rudder failure: A cooperative machine learning based low cost model
Karan Pk, S. A. Karthick, Oh-Min Kwon 0001, Boomipalagan Kaviarasan |
Fuzzy Sets Syst. | 4 |
| 2024 | Stabilization of Periodic Piecewise Time-Varying Systems With Time-Varying Delay Under Multiple Cyber Attacks: An Augmented Lyapunov Functional ApproachabstractThis article investigates the asymptotic stabilization of periodic piecewise time-varying systems with time-varying delay under various cyber attacks, particularly deception and acrlong DoS attacks. The addressed system is reformed into a number of time-varying subsystems based on the time interval for each period. Following that, a state-feedback controller with periodic time-varying gain parameters is developed to solve the stabilization problem. The control design depicts the possibility of the aforementioned cyber attacks with two mutually exclusive stochastic Bernoulli distributed parameters. Then, an augmented Lyapunov-Krasovskii functional with periodically varying matrices is used to determine the conditions for designing the proposed controller that ensures the mean-square asymptotic stability of the addressed system. The results of numerical examples support the conclusion that the proposed method is effective and superior, regardless of the cyber attacks involved. Boomipalagan Kaviarasan, Oh-Min Kwon 0001, Myeong-Jin Park, Rathinasamy Sakthivel |
IEEE Trans. Cybern. | 1 |
| 2023 | Antidisturbance Control Design for Interval Type-2 Fuzzy Stochastic Systems With Input QuantizationabstractQuantized antidisturbance control design problem is presented for a class of interval type-2 (IT2) fuzzy stochastic systems subject to time delays and multiple disturbances. The inherent uncertain nonlinear and hybrid characteristics of the concerned system make it difficult to design a stable antidisturbance controller. In order to properly reflect the characteristics of IT2 fuzzy stochastic models with multiple disturbances, a new fuzzy disturbance observer is proposed to estimate the disturbances generated by a fuzzy exogenous system. Furthermore, a quantized fuzzy antidisturbance control scheme is synthesized by fusing the estimation of the multiple disturbances. With the support of Lyapunov functional method,$It{\hat{o}}$’s formula and auxiliary function-based integral inequality, the resulting IT2 fuzzy stochastic systems are proved to be robustly stochastically stable with mixed$H_\infty$/passivity performance index. The design methods of the fuzzy disturbance observer and quantized antidisturbance controller are formulated in the form of linear matrix inequalities so that the corresponding gain matrices can be easily obtained. Finally, simulation studies on three examples are provided to justify the efficiency of the designed control strategy. Ramasamy Kavikumar, Oh-Min Kwon 0001, Boomipalagan Kaviarasan, Rathinasamy Sakthivel |
IEEE Trans. Fuzzy Syst. | 3 |
| 2023 | Secure Communication in Complex Dynamical Networks via Time-Delayed Feedback ControlabstractIn this article, a synchronization method of complex dynamical networks (CDNs) with time-varying delay feedback control is proposed to secure communication between the command system and each node of CDNs. To advance the security of the communication between the command system and each node of CDNs, the original information signal transmitted from the command system is encrypted with the techniques of$\mathcal {N}$-shift cipher and public key. Based on the Lyapunov stability sense and linear matrix inequality (LMI) framework, a new delay-dependent synchronization criterion is established to restore the original information signal on each node of the CDN as well as to ensure stable synchronization for secure communication of all nodes of the command system and CDN. With the support of numerical simulation, the validity of the proposed method is verified. Myeong-Jin Park, Seung-Hoon Lee 0001, Boomipalagan Kaviarasan, Oh-Min Kwon 0001 |
IEEE Trans. Syst. Man Cybern. Syst. | 3 |
| 2022 | Input-Output Finite-Time Stabilization of T-S Fuzzy Systems Through Quantized Control StrategyabstractThe issues of input–output finite-time stability and stabilization of Takagi–Sugeno (T–S) fuzzy systems with time-varying state delay and exogenous input signal are studied in this article. For the stabilization process, a controller that does not share the same membership functions as the system is considered and the state feedback is quantized by using a logarithmic quantizer. The desired stability criterion for the addressed fuzzy system is first derived without the control term. It is then extended to the case in which the proposed controller is present. The stability criteria are given in the form of matrix inequalities, which are supported by the augmented Lyapunov–Krasovskii functional, generalized free-weighting-matrix approach and Finsler’s lemma. Moreover, as a special case, an asymptotic stability criterion is obtained and used in a comparative study. As a result, the time-delay interval is much larger than some of the works published very recently, which is due to the augmented Lyapunov–Krasovskii functional construction. In addition, the effectiveness and practicability of the theoretical findings are validated with simulation examples. Boomipalagan Kaviarasan, Oh-Min Kwon 0001, Myeong-Jin Park, Rathinasamy Sakthivel |
IEEE Trans. Fuzzy Syst. | 1 |
| 2022 | Tuning Parameters-Based Fault Estimation Observer for Time-Delay Fuzzy Systems Over a Finite HorizonabstractIn this work, the problem of fault and state estimation is studied for Takagi–Sugeno fuzzy systems with time-varying delay and external disturbance over a finite horizon. A fuzzy rule-based fault estimator with two tuning parameters, including the current system output information, is designed. Based on which, the Luenberger state observer is then considered to estimate the immeasurable states of the system addressed. The aim of taking into account the tuning parameters in the estimator design is to improve the accuracy of the fault estimation. More precisely, by defining error variables in accordance with actual and estimated system states and faults, an augmented system is formulated to achieve the desired results. By using the existing stability theory and integral inequality, a delay-dependent criterion for ensuring that the states of the augmented system are bounded over a finite horizon is derived. Subsequently, conditions for determining the observer gain matrices are presented. Two simulation examples, including an application example of the truck-trailer model, are provided to demonstrate the advantages of the theoretical results that have been established. In particular, the importance of the use of tuning parameters is discussed. Boomipalagan Kaviarasan, Oh-Min Kwon 0001, Myeong-Jin Park, Rathinasamy Sakthivel |
IEEE Trans. Syst. Man Cybern. Syst. | 1 |
| 2021 | Fault Estimation for Mode-Dependent IT2 Fuzzy Systems With Quantized Output SignalsabstractThe aim of this article is to analyze the problem of fault estimation for mode-dependent interval type-2 fuzzy systems with quantized output measurements. Different from the existing fault estimation methods requiring the observer matching condition, a new fault estimation technique is proposed, wherein a stochastically intermediate variable subject to the information on operating modes is considered, under which a robust observer is constructed to simultaneously estimate the state and faults. Based on the strategy of linear matrix inequality, sufficient conditions are established to ensure that the states of resulting systems are bounded in probability sense. By offering three illustrative examples, in which two of them are practical models, namely, tunnel diode circuit system and Rössler system, the availability and feasibility of the proposed design method are explained. Rathinasamy Sakthivel, Ramasamy Kavikumar, Ardashir Mohammadzadeh, Oh-Min Kwon 0001, Boomipalagan Kaviarasan |
IEEE Trans. Fuzzy Syst. | 5 |
| 2021 | Integrated Synchronization and Anti-Disturbance Control Design for Fuzzy Model-Based Multiweighted Complex NetworkabstractThis article intends to provide an integrated robust synchronization and anti-disturbance control design for a nonlinear multiweighted complex network with the use of fuzzy modeling approach. The network takes the effect of both matched and mismatched disturbances into account, wherein the matched one is unknown and caused by some exogenous systems. In order to estimate the unknown disturbance, a disturbance observer is precisely considered. By exploiting the parallel distributed compensation strategy and the output of disturbance observer, the desired fuzzy rule-based control law is formulated. Based on these settings, the required control gain matrices that affirm asymptotic synchronization of the addressed network are determined with the support of the Lyapunov functional method and extended Wirtinger's integral inequality. The method of this article can render better system performance than the existing H∞control method, which is demonstrated via simulations. In addition, a three-dimensional Lorenz chaotic model is employed to certify the applicability of the theoretical findings. Boomipalagan Kaviarasan, Oh-Min Kwon 0001, Myeong-Jin Park, Rathinasamy Sakthivel |
IEEE Trans. Syst. Man Cybern. Syst. | 1 |
| 2020 | Modified Repetitive Control Design for Nonlinear Systems With Time Delay Based on T-S Fuzzy ModelabstractIn this paper, based on the Takagi-Sugeno fuzzy model approach, a novel output feedback control strategy is developed for a class of continuous-time nonlinear time delay systems via modified repetitive control scheme. The main objective of this paper is to design a fuzzy rule-based modified repetitive controller such that the system output can track any given periodic reference signal even in the presence of periodic disturbances. For this purpose, by employing fuzzy-dependent Lyapunov-Krasovskii functional together with the free-weighting matrix technique, a new set of sufficient conditions is presented in terms of linear matrix inequalities to guarantee the robust stability of the resulting closed-loop system. Based on these conditions and using internal model principle, it is shown that the system output tracks the given reference input within the desired error. Finally, two application-oriented examples are presented to validate the obtained theoretical results in which the proposed control design scheme gives better performance over the existing control scheme. Rathinasamy Sakthivel, Palanisamy Selvaraj, Boomipalagan Kaviarasan |
IEEE Trans. Syst. Man Cybern. Syst. | 3 |
| 2019 | Non-fragile control design for interval-valued fuzzy systems against nonlinear actuator faults
Ramasamy Kavikumar, Rathinasamy Sakthivel, Boomipalagan Kaviarasan, Oh-Min Kwon 0001, Selvaraj Marshal Anthoni |
Fuzzy Sets Syst. | 3 |
| 2019 | Finite-time consensus of input delayed multi-agent systems via non-fragile controller subject to switching topology
Rathinasamy Sakthivel, S. Kanakalakshmi, Boomipalagan Kaviarasan, Yong-Ki Ma, A. Leelamani |
Neurocomputing | 3 |
| 2019 | Finite-time leaderless consensus of uncertain multi-agent systems against time-varying actuator faults
Rathinasamy Sakthivel, Ramalingam Sakthivel, Boomipalagan Kaviarasan, Hosoo Lee, Yongdo Lim |
Neurocomputing | 3 |
| 2018 | Resilient control design for consensus of nonlinear multi-agent systems with switching topology and randomly varying communication delays
Boomipalagan Kaviarasan, Rathinasamy Sakthivel, Chao Wang 0006, Faris Alzahrani |
Neurocomputing | 1 |
| 2018 | Leader-following exponential consensus of input saturated stochastic multi-agent systems with Markov jump parameters
Rathinasamy Sakthivel, Ramalingam Sakthivel, Boomipalagan Kaviarasan, Faris Alzahrani |
Neurocomputing | 3 |
| 2018 | Non-fragile filtering for singular Markovian jump systems with missing measurements
Murugesan Sathishkumar, Rathinasamy Sakthivel, Chao Wang 0006, Boomipalagan Kaviarasan, Selvaraj Marshal Anthoni |
Signal Process. | 4 |
| 2018 | Observer and Stochastic Faulty Actuator-Based Reliable Consensus Protocol for Multiagent SystemabstractA nondeterministic actuator fault model-based reliable control design method is presented for the leader-following consensus of a multiagent system (MAS) subject to input time-varying delay and the nonlinear phenomenon through the observer framework. Notably, a more generalized practical actuator fault model is proposed where the faults of each actuator are assumed to occur randomly and the fault rates are characterized by stochastic variables that satisfy certain probability conditions. To trace the leader dynamics, a reliable observer-based state feedback consensus algorithm is developed for the pursuing agents. After that, in light of graph theory and the Lyapunov-Krasovskii stability theorem, the required conditions are achieved to guarantee the leader-following consensus of the considered MAS, and then the corresponding reliable controller design method is proposed. Furthermore, simulations are eventually conducted to exhibit the efficiency of the newly developed control scheme, where it is shown that the obtained conditions guarantee the consensus of the considered MAS in the case of possible actuator faults. Rathinasamy Sakthivel, Boomipalagan Kaviarasan, Choon Ki Ahn, Hamid Reza Karimi |
IEEE Trans. Syst. Man Cybern. Syst. | 2 |
| 2017 | Synchronization and state estimation for stochastic complex networks with uncertain inner coupling
Rathinasamy Sakthivel, Murugesan Sathishkumar, Boomipalagan Kaviarasan, Selvaraj Marshal Anthoni |
Neurocomputing | 3 |
| 2016 | Synchronization of complex dynamical networks with uncertain inner coupling and successive delays based on passivity theory
Boomipalagan Kaviarasan, Rathinasamy Sakthivel, Yongdo Lim |
Neurocomputing | 1 |
| 2015 | Leader-following consensus of multi-agent systems via sampled-data control with randomly missing data
R. Rakkiyappan, Boomipalagan Kaviarasan, Jinde Cao |
Neurocomputing | 2 |
| 2015 | Leader-following consensus for networked multi-teleoperator systems via stochastic sampled-data control
R. Rakkiyappan, Boomipalagan Kaviarasan, Ju H. Park 0001 |
Neurocomputing | 2 |