


default search action
Lakshmanan Shanmugam
Person information
- affiliation: Vellore Institute of Technology, Department of Mathematics, Chennai, India
- affiliation: Deakin University, Institute for Intelligent Systems Research and Innovation, Australia
- affiliation (former): Kunsan National University, South Korea
Refine list

refinements active!
zoomed in on ?? of ?? records
view refined list in
2020 – today
- 2026
[j64]Chithra Selvam
, Reegan Jebadass Johnson Jebadass, Dhanasekar Sundaram, Lakshmanan Shanmugam:
A novel sand-dust image enhancement model using intuitionistic fuzzy generator. Comput. Electr. Eng. 133: 111091 (2026)
[j63]Ayyappan N
, Nallappan Gunasekaran
, A. Manivannan, Lakshmanan Shanmugam
:
Finite-time H∞ boundedness of delayed interconnected systems using sliding mode control with partitioned interval strategy. Commun. Nonlinear Sci. Numer. Simul. 157: 109673 (2026)
[j62]Jayabharathi Jayavel, Khang Wen Goh, Lakshmanan Shanmugam:
Finite-time Stability of Delayed Recurrent Neural Networks with the Effect of Impulsive Control. Neural Process. Lett. 58(2): 25 (2026)- 2025
[j61]S. Arunagirinathan
, Lakshmanan Shanmugam, Tae H. Lee
:
Secure Multiplicative Sampled-Data Control for T-S Fuzzy-Based Cyber-Physical Systems Subject to Deception Attacks. Circuits Syst. Signal Process. 44(3): 1697-1725 (2025)
[j60]Haripriya Muralikrishnan, N. Padmaja
, E. Umamaheswari, Lakshmanan Shanmugam:
Synchronization for coupling delayed complex dynamical networks in time-square-dependent looped-functionals via a new sampled-data control approach. Neurocomputing 649: 130819 (2025)
[j59]Monnishkaran Madheswaran
, Keerthana Jaganathan
, Lakshmanan Shanmugam
:
Deep Learning-Based Multimodal Fusion Approach for Predicting Acute Dermal Toxicity. J. Chem. Inf. Model. 65(14): 7540-7553 (2025)
[j58]Karpagavalli Sundararajan
, Padmaja Narasimman
, Tae H. Lee, Lakshmanan Shanmugam
:
Fractional Exponent-Based Looped-Lyapunov Functional for Mode-Dependent Sampled-Data Control of T-S Fuzzy Markovian Jump Systems With $\mathscr {H}_{\infty }$ Performance. IEEE Trans. Fuzzy Syst. 33(7): 2174-2188 (2025)
[j57]Jayabharathi Jayavel, Lakshmanan Shanmugam
:
Fixed-Time Synchronization of Leaderless and Leader-Following Multi-Agent Networks With Delayed Impulses. IEEE Trans. Signal Inf. Process. over Networks 11: 1382-1393 (2025)- 2024
[j56]Chithra Selvam
, Reegan Jebadass Johnson Jebadass
, Dhanasekar Sundaram
, Lakshmanan Shanmugam
:
A novel intuitionistic fuzzy generator for low-contrast color image enhancement technique. Inf. Fusion 108: 102365 (2024)
[j55]Lakshmanan Shanmugam
, Kumarasamy Palanimuthu, Young Hoon Joo
:
Decentralized Sampled-Data Control for Stochastic Disturbance in Interconnected Power Systems With PMSG-Based Wind Turbines. IEEE Trans. Cybern. 54(6): 3516-3525 (2024)
[j54]Bhuvaneshwari Ganesan, Mani Prakash
, Lakshmanan Shanmugam
, Manivannan Annamalai
:
Synchronization of Stochastic Neural Networks Using Looped-Lyapunov Functional and Its Application to Secure Communication. IEEE Trans. Neural Networks Learn. Syst. 35(4): 5198-5210 (2024)- 2023
[j53]Lakshmanan Shanmugam, Young Hoon Joo
:
Adaptive neural networks-based integral sliding mode control for T-S fuzzy model of delayed nonlinear systems. Appl. Math. Comput. 450: 127983 (2023)
[j52]R. Vadivel, Zeric Tabekoueng Njitacke, Lakshmanan Shanmugam, Porpattama Hammachukiattikul, Nallappan Gunasekaran
:
Dynamical analysis and reachable set estimation of T-S fuzzy system with permanent magnet synchronous motor. Commun. Nonlinear Sci. Numer. Simul. 125: 107407 (2023)- 2022
[j51]Lakshmanan Shanmugam
, Young Hoon Joo
:
Stability Criteria for Fuzzy-Based Sampled-Data Control Systems via a Fractional Parameter-Based Refined Looped Lyapunov Functional. IEEE Trans. Fuzzy Syst. 30(7): 2538-2549 (2022)- 2021
[j50]Lakshmanan Shanmugam, Young Hoon Joo
:
Stabilization of permanent magnet synchronous generator-based wind turbine system via fuzzy-based sampled-data control approach. Inf. Sci. 559: 270-285 (2021)
[j49]Lakshmanan Shanmugam, Young Hoon Joo
:
Investigation on stability of delayed T-S fuzzy interconnected systems via decentralized memory-based sampled-data control and validation through interconnected power systems with DFIG-based wind turbines. Inf. Sci. 580: 934-952 (2021)
[j48]Lakshmanan Shanmugam
, Young Hoon Joo
:
Further Stability and Stabilization Condition for Sampled-Data Control Systems via Looped-Functional Method. IEEE Trans. Circuits Syst. II Express Briefs 68(1): 301-305 (2021)
[j47]Lakshmanan Shanmugam
, Young Hoon Joo
:
Design of Interval Type-2 Fuzzy-Based Sampled-Data Controller for Nonlinear Systems Using Novel Fuzzy Lyapunov Functional and its Application to PMSM. IEEE Trans. Syst. Man Cybern. Syst. 51(1): 542-551 (2021)
[j46]Lakshmanan Shanmugam
, Young Hoon Joo
:
Stability and Stabilization for T-S Fuzzy Large-Scale Interconnected Power System With Wind Farm via Sampled-Data Control. IEEE Trans. Syst. Man Cybern. Syst. 51(4): 2134-2144 (2021)- 2020
[j45]Lakshmanan Shanmugam
, Mani Prakash, Rajan Rakkiyappan
, Young Hoon Joo
:
Adaptive Synchronization of Reaction-Diffusion Neural Networks and Its Application to Secure Communication. IEEE Trans. Cybern. 50(3): 911-922 (2020)
2010 – 2019
- 2019
[j44]Fathalla A. Rihan
, Lakshmanan Shanmugam, Helmut Maurer:
Optimal control of tumour-immune model with time-delay and immuno-chemotherapy. Appl. Math. Comput. 353: 147-165 (2019)
[j43]Mani Prakash
, Rajan Rakkiyappan, Lakshmanan Shanmugam
, Young Hoon Joo
:
Adaptive control for fractional order induced chaotic fuzzy cellular neural networks and its application to image encryption. Inf. Sci. 491: 74-89 (2019)
[j42]Rajivganthi Chinnathambi
, Fathalla A. Rihan
, Lakshmanan Shanmugam
:
Dissipativity analysis of complex-valued BAM neural networks with time delay. Neural Comput. Appl. 31(1): 127-137 (2019)
[j41]Muthukumar Palanisamy
, S. Arunagirinathan
, Lakshmanan Shanmugam
:
Nonfragile Sampled-Data Control for Uncertain Networked Control Systems With Additive Time-Varying Delays. IEEE Trans. Cybern. 49(4): 1512-1523 (2019)
[j40]Mani Prakash
, Rajan Rakkiyappan
, Lakshmanan Shanmugam
, Young Hoon Joo
:
Adaptive Fractional Fuzzy Integral Sliding Mode Control for PMSM Model. IEEE Trans. Fuzzy Syst. 27(8): 1674-1686 (2019)- 2018
[j39]K. Subramanian
, Muthukumar Palanisamy
, Lakshmanan Shanmugam
:
State feedback synchronization control of impulsive neural networks with mixed delays and linear fractional uncertainties. Appl. Math. Comput. 321: 267-281 (2018)
[j38]Fathalla A. Rihan
, Cemil Tunç
, S. H. Saker
, Lakshmanan Shanmugam
, R. Rakkiyappan
:
Applications of Delay Differential Equations in Biological Systems. Complex. 2018: 4584389:1-4584389:3 (2018)
[j37]Houshyar Asadi
, Chee Peng Lim, Arash Mohammadi
, Shady M. K. Mohamed, Saeid Nahavandi, Lakshmanan Shanmugam
:
A genetic algorithm-based nonlinear scaling method for optimal motion cueing algorithm in driving simulator. J. Syst. Control. Eng. 232(8): 1025-1038 (2018)
[j36]Rajivganthi Chinnathambi
, Fathalla A. Rihan
, Lakshmanan Shanmugam
, Muthukumar Palanisamy
:
Finite-time stability analysis for fractional-order Cohen-Grossberg BAM neural networks with time delays. Neural Comput. Appl. 29(12): 1309-1320 (2018)
[j35]Reza Mohajerpoor
, Lakshmanan Shanmugam
, Hamid Abdi, Saeid Nahavandi
, Ju H. Park
:
Delay-Dependent Functional Observer Design for Linear Systems With Unknown Time-Varying State Delays. IEEE Trans. Cybern. 48(7): 2036-2048 (2018)
[j34]Lakshmanan Shanmugam
, Mani Prakash, Chee Peng Lim
, Rajan Rakkiyappan, Pagavathigounder Balasubramaniam, Saeid Nahavandi
:
Synchronization of an Inertial Neural Network With Time-Varying Delays and Its Application to Secure Communication. IEEE Trans. Neural Networks Learn. Syst. 29(1): 195-207 (2018)
[j33]Saba Al-Wais
, Reza Mohajerpoor, Lakshmanan Shanmugam
, Hamid Abdi, Saeid Nahavandi
:
Improved Delay-Dependent Stability Criteria for Telerobotic Systems With Time-Varying Delays. IEEE Trans. Syst. Man Cybern. Syst. 48(12): 2470-2484 (2018)- 2017
[j32]Lakshmanan Shanmugam
, Chee Peng Lim, Mani Prakash, Saeid Nahavandi, Pagavathigounder Balasubramaniam:
Neutral-type of delayed inertial neural networks and their stability analysis using the LMI Approach. Neurocomputing 230: 243-250 (2017)
[j31]Reza Mohajerpoor
, Lakshmanan Shanmugam
, Hamid Abdi, Saeid Nahavandi, Mehrdad Saif
:
Functional observer design for retarded system with interval time-varying delays. Int. J. Syst. Sci. 48(5): 1060-1070 (2017)
[j30]K. Sivaranjani, R. Rakkiyappan, Lakshmanan Shanmugam
, Chee Peng Lim:
Robust stochastic sampled-data control for offshore steel jacket platforms with non-linear perturbations. IMA J. Math. Control. Inf. 34(1): 337-357 (2017)
[j29]Reza Mohajerpoor
, Lakshmanan Shanmugam
, Hamid Abdi, Rajan Rakkiyappan, Saeid Nahavandi, Ju H. Park:
Improved delay-dependent stability criteria for neutral systems with mixed interval time-varying delays and nonlinear disturbances. J. Frankl. Inst. 354(2): 1169-1194 (2017)
[j28]Lakshmanan Shanmugam
, Chee Peng Lim
, Saeid Nahavandi, Mani Prakash, P. Balasubramaniam
:
Dynamical Analysis of the Hindmarsh-Rose Neuron With Time Delays. IEEE Trans. Neural Networks Learn. Syst. 28(8): 1953-1958 (2017)
[c2]Saba Al-Wais
, Tae H. Lee
, Lakshmanan Shanmugam
, Hamid Abdi, Saeid Nahavandi:
H∞ based state feedback robust controller for nonlinear tele-operation system with variable time-delays. ASCC 2017: 600-605- 2016
[j27]Rajan Rakkiyappan, Gandhi Velmurugan
, Fathalla A. Rihan
, Lakshmanan Shanmugam
:
Stability analysis of memristor-based complex-valued recurrent neural networks with time delays. Complex. 21(4): 14-39 (2016)
[j26]Muhammed Syed Ali
, Pagavathigounder Balasubramaniam
, Fathalla A. Rihan
, Lakshmanan Shanmugam
:
Stability criteria for stochastic Takagi-Sugeno fuzzy Cohen-Grossberg BAM neural networks with mixed time-varying delays. Complex. 21(5): 143-154 (2016)
[j25]Rajivganthi Chinnathambi
, Fathalla A. Rihan
, Lakshmanan Shanmugam
, Rajan Rakkiyappan, Muthukumar Palanisamy
:
Synchronization of memristor-based delayed BAM neural networks with fractional-order derivatives. Complex. 21(S2): 412-426 (2016)
[j24]Reza Mohajerpoor
, Hamid Abdi, Lakshmanan Shanmugam
, Saeid Nahavandi:
Partial state estimation of LTI systems with multiple constant time-delays. J. Frankl. Inst. 353(2): 541-560 (2016)
[j23]Muthukumar Palanisamy
, K. Subramanian
, Lakshmanan Shanmugam
:
Robust finite time stabilization analysis for uncertain neural networks with leakage delay and probabilistic time-varying delays. J. Frankl. Inst. 353(16): 4091-4113 (2016)
[j22]R. Rakkiyappan, Rathinasamy Sasirekha, Lakshmanan Shanmugam
, Chee Peng Lim:
Synchronization of discrete-time Markovian jump complex dynamical networks with random delays via non-fragile control. J. Frankl. Inst. 353(16): 4300-4329 (2016)
[j21]Mani Prakash, Pagavathigounder Balasubramaniam
, Lakshmanan Shanmugam
:
Synchronization of Markovian jumping inertial neural networks and its applications in image encryption. Neural Networks 83: 86-93 (2016)- 2015
[j20]R. Rakkiyappan, A. Chandrasekar, Lakshmanan Shanmugam
, Ju H. Park:
Exponential stability for markovian jumping stochastic BAM neural networks with mode-dependent probabilistic time-varying delays and impulse control. Complex. 20(3): 39-65 (2015)
[j19]R. Rakkiyappan, B. Kaviarasan
, Fathalla A. Rihan
, Lakshmanan Shanmugam
:
Synchronization of singular Markovian jumping complex networks with additive time-varying delays via pinning control. J. Frankl. Inst. 352(8): 3178-3195 (2015)
[j18]G. Velmurugan
, R. Rakkiyappan, Lakshmanan Shanmugam
:
Passivity Analysis of Memristor-Based Complex-Valued Neural Networks with Time-Varying Delays. Neural Process. Lett. 42(3): 517-540 (2015)
[c1]Lakshmanan Shanmugam
, Chee Peng Lim, Asim Bhatti
, David Yang Gao
, Saeid Nahavandi:
Dynamical Analysis of Neural Networks with Time-Varying Delays Using the LMI Approach. ICONIP (3) 2015: 297-305- 2014
[j17]Fathalla A. Rihan
, D. H. Abdel Rahman, Lakshmanan Shanmugam
, A. S. Alkhajeh:
A time delay model of tumour-immune system interactions: Global dynamics, parameter estimation, sensitivity analysis. Appl. Math. Comput. 232: 606-623 (2014)
[j16]R. Rakkiyappan, A. Chandrasekar, Lakshmanan Shanmugam, Ju H. Park:
State estimation of memristor-based recurrent neural networks with time-varying delays based on passivity theory. Complex. 19(4): 32-43 (2014)
[j15]Lakshmanan Shanmugam
, K. Mathiyalagan
, Ju H. Park
, Rathinasamy Sakthivel
, Fathalla A. Rihan
:
Delay-dependent H∞ state estimation of neural networks with mixed time-varying delays. Neurocomputing 129: 392-400 (2014)
[j14]R. Rakkiyappan, A. Chandrasekar, Lakshmanan Shanmugam
, Ju H. Park
:
Exponential stability of Markovian jumping stochastic Cohen-Grossberg neural networks with mode-dependent probabilistic time-varying delays and impulses. Neurocomputing 131: 265-277 (2014)
[j13]A. Chandrasekar, R. Rakkiyappan, Fathalla A. Rihan
, Lakshmanan Shanmugam
:
Exponential synchronization of Markovian jumping neural networks with partly unknown transition probabilities via stochastic sampled-data control. Neurocomputing 133: 385-398 (2014)
[j12]A. Chandrasekar, R. Rakkiyappan, Jinde Cao
, Lakshmanan Shanmugam
:
Synchronization of memristor-based recurrent neural networks with two delay components based on second-order reciprocally convex approach. Neural Networks 57: 79-93 (2014)- 2013
[j11]Lakshmanan Shanmugam
, Ju H. Park, Tae H. Lee
, Ho Y. Jung, R. Rakkiyappan:
Stability criteria for BAM neural networks with leakage delays and probabilistic time-varying delays. Appl. Math. Comput. 219(17): 9408-9423 (2013)
[j10]Lakshmanan Shanmugam
, Ju H. Park, Ho Y. Jung, Pagavathigounder Balasubramaniam
, Sang-Moon Lee
:
Design of state estimator for genetic regulatory networks with time-varying delays and randomly occurring uncertainties. Biosyst. 111(1): 51-70 (2013)
[j9]R. Rakkiyappan, Lakshmanan Shanmugam
, Pagavathigounder Balasubramaniam
:
Delay-Probability-Distribution-Dependent Stability of Uncertain Stochastic Genetic Regulatory Networks with Time-Varying Delays. Circuits Syst. Signal Process. 32(3): 1147-1177 (2013)
[j8]Lakshmanan Shanmugam
, Ju H. Park, Ho Y. Jung:
Robust Delay-Dependent Stability Criteria for Dynamic Systems with Nonlinear Perturbations and Leakage Delay. Circuits Syst. Signal Process. 32(4): 1637-1657 (2013)
[j7]Lakshmanan Shanmugam
, Ju H. Park, Ho Y. Jung, O. M. Kwon, R. Rakkiyappan:
A delay partitioning approach to delay-dependent stability analysis for neutral type neural networks with discrete and distributed delays. Neurocomputing 111: 81-89 (2013)
[j6]R. Rakkiyappan, A. Chandrasekar, Lakshmanan Shanmugam
, Ju H. Park, Ho Y. Jung:
Effects of leakage time-varying delays in Markovian jump neural networks with impulse control. Neurocomputing 121: 365-378 (2013)- 2012
[j5]Lakshmanan Shanmugam
, Ju H. Park, Ho Y. Jung, Pagavathigounder Balasubramaniam
:
Design of state estimator for neural networks with leakage, discrete and distributed delays. Appl. Math. Comput. 218(22): 11297-11310 (2012)
[j4]Pagavathigounder Balasubramaniam
, Lakshmanan Shanmugam
, Rajan Rakkiyappan:
LMI optimization problem of delay-dependent robust stability criteria for stochastic systems with polytopic and linear fractional uncertainties. Int. J. Appl. Math. Comput. Sci. 22(2): 339-351 (2012)- 2011
[j3]Pagavathigounder Balasubramaniam
, Lakshmanan Shanmugam
:
LMI Conditions for Robust Stability Analysis of Stochastic Hopfield Neural Networks with Interval Time-Varying Delays and Linear Fractional Uncertainties. Circuits Syst. Signal Process. 30(5): 1011-1028 (2011)
[j2]Pagavathigounder Balasubramaniam
, Lakshmanan Shanmugam
:
Delay-interval-dependent robust-stability criteria for neutral stochastic neural networks with polytopic and linear fractional uncertainties. Int. J. Comput. Math. 88(10): 2001-2015 (2011)
2000 – 2009
- 2009
[j1]Pagavathigounder Balasubramaniam
, Lakshmanan Shanmugam
, R. Rakkiyappan:
Delay-interval dependent robust stability criteria for stochastic neural networks with linear fractional uncertainties. Neurocomputing 72(16-18): 3675-3682 (2009)
Coauthor Index
aka: Pagavathigounder Balasubramaniam
aka: Rajan Rakkiyappan

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 2026-06-05 02:07 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint


Google
Google Scholar
Semantic Scholar
Internet Archive Scholar
CiteSeerX
ORCID







