Sondipon Adhikari · Glasgow

Publications by research area

Inverse problems and probabilistic inference

Identification, model updating, damage detection, sensing and probabilistic inference for mechanical systems.

Published journal papers, numbered 1 to 44 within this area and counting from the oldest. 44 have full text on this site. About this research · Full archive

2024 2023 2021 2020 2018 2017 2016 2015 2013 2012 2011 2010 2009 2007 2002

2024 2 papers · nos. 43–44

  1. Chatterjee, T., Friswell, M I., Adhikari, S. and Khodaparast, H. H., "MATLAB Implementation of physics informed deep neural networks for forward and inverse structural vibration problems", Aerospace Research Communications, 2[7] (2024), pp. 13194.
  2. Gupta, V. Adhikari, S. and Bhattacharya, B., "Evidence of nonlinearity tailoring in static and dynamic responses of honeycomb and auxetic hourglass lattice metastructures", Mechanics Research Communications, 137[5] (2024), pp. 104261.

2023 4 papers · nos. 39–42

  1. Desai, A. S., Navaneeth, N., Adhikari, S. and Chakraborty, S., "Enhanced multi-fidelity modeling for digital twin and uncertainty quantification", Probabilistic Engineering Mechanics, 74[10] (2023), pp. 103525.
  2. Tripura, T., Desai, A. S., Adhikari, S. and Chakraborty, S., "Probabilistic machine learning based predictive and interpretable digital twin for dynamical systems", Computers and Structures, 281[6] (2023), pp. 107008.
  3. Arora, v. and Adhikari, S., "FRF-based finite element model updating for non-viscous and non-proportionally damped systems", Journal of Sound and Vibration, 552[5] (2023), pp. 117639.
  4. Panda, S., Banerjee, A., Baxy, A., Manna, B. and Adhikari, S., "Artificial neural network-based multiple-input multiple-output metamodel for prediction of design parameters for a high-speed rail viaduct", Structure and Infrastructure Engineering, 20[1] (2023), pp. 1-19.

2021 3 papers · nos. 36–38

  1. Chakraborty, S. and Adhikari, S., "Machine learning based digital twin for dynamical systems with multiple time-scales", Computers and Structures, 243[1] (2021), pp. 106410.
  2. Chakraborty, S., Adhikari, S. and Ganguli, R., "The role of surrogate models in the development of digital twin of dynamic systems", Applied Mathematical Modelling, 90[2] (2021), pp. 662-681.
  3. Adhikari, S. and Khodaparast, H. H., "A multimodal approach for simultaneous mass and rotary inertia sensing from vibrating cantilever nanobeams", Physica E: Low-dimensional Systems and Nanostructures, 125[1] (2021), pp. 114366.

2020 1 paper · no. 35

  1. Ganguli, R. and Adhikari, S., "The digital twin of discrete dynamic systems: Initial approaches and future challenges", Applied Mathematical Modelling, 77[2] (2020), pp. 1110-1128.

2018 1 paper · no. 34

  1. Machado, M. R., Adhikari, S., Dos Santos J. M. C. and Arruda, J. R. F., "Estimation of beam material random field properties via sensitivity-based model updating using experimental frequency response functions", Mechanical Systems and Signal Processing, 102[3] (2018), pp. 180-197.

2017 5 papers · nos. 29–33

  1. Adhikari, S., "Inertial mass sensing with low Q-factor vibrating microcantilevers", Journal of Applied Physics, 122[10] (2017), pp. 144304:1-15.
  2. Haddad Khodaparast, H, Govers, Y., Dayyani, I., Adhikari, S., Link, M., Friswell, M. I., Mottershead, J. E. and Sienz, J., "Fuzzy finite element model updating of the DLR AIRMOD test structure", Applied Mathematical Modelling, 52[12] (2017), pp. 512-526.
  3. Boulkaibet, I., Mthembua, L., Marwala, T., Friswell, M. I. and Adhikari, S., "Finite element model updating using Hamiltonian Monte Carlo technique", Inverse Problems in Science & Engineering, 25[7] (2017), pp. 1042-1070.
  4. Machado, M. R., Adhikari, S. and Dos Santos J. M. C., "A spectral approach for damage quantification in stochastic dynamic systems", Mechanical Systems and Signal Processing, 88[5] (2017), pp. 253-273.
  5. Boulkaibet, I., Mthembua, L., Marwala, T., Friswell, M. I. and Adhikari, S., "Finite element model updating using the shadow hybrid Monte Carlo technique", Mechanical Systems and Signal Processing, 52-53[1] (2015), pp. 115-132.

2016 1 paper · no. 28

  1. Adhikari, S., "Nonlocal mechanics based computational methods for nanomechanical sensors", Procedia Technology, 23[2] (2016), pp. 7-19.

2015 2 papers · nos. 26–27

  1. Karlicic, D., Kozic, P., Adhikari, S., Cajic, M., Murmu, T. and Lazarevic, M., "Nonlocal biosensor based on the damped vibration of single-layer graphene influenced by in-plane magnetic field", International Journal of Mechanical Sciences, 96-97[6] (2015), pp. 132-142.
  2. Khalil, M., Sarkar, A., Adhikari, S. and Poirel, D., "The estimation of time-invariant parameters of noisy nonlinear oscillatory systems", Journal of Sound and Vibration, 344[5] (2015), pp. 81-100.

2013 2 papers · nos. 24–25

  1. Kam, K., Scarpa, F., Adhikari, S. and Chowdhury, R., "Graphene nanofilm as pressure and force sensor: a mechanical analysis", Physica Status Solidi B, 250[10] (2013), pp. 2085-2089.
  2. Murmu, T. and Adhikari, S., "Nonlocal mass nanosensors based on vibrating monolayer graphene sheets" Sensors & Actuators: B. Chemical, 188[11] (2013), pp. 1319-1327.

2012 6 papers · nos. 18–23

  1. Papai, F., Adhikari, S. and Wang, B., "Estimation of modal dampings for unmeasured modes", Slovak Journal of Civil Engineering, 20[4] (2012), pp. 17-27.
  2. Chowdhury, R., Scarpa, F. and Adhikari, S., "Molecular-scale bio-sensing using armchair graphene", Journal of Applied Physics, 112[1] (2012), pp. 014905:1-6.
  3. Adhikari, S. and Chowdhury, R., "Zeptogram sensing from gigahertz vibration: Graphene based nanosensor", Physica E: Low-dimensional Systems and Nanostructures, 44[7-8] (2012), pp. 1528-1534.
  4. Jacquelin, E., Adhikari, S. and Friswell, M. I., "A second-moment approach for direct probabilistic model updating in structural dynamics", Mechanical Systems and Signal Processing, 29[5] (2012), pp. 262-283.
  5. Chowdhury, R., Adhikari, S., Rees, P., "Zigzag graphene nanoribbon single-electron transistors", Physica B: Condensed Matter, 407[5] (2012), pp. 855-858.
  6. Murmu, T. and Adhikari, S., "Nonlocal frequency analysis of nanoscale biosensors", Sensors & Actuators: A. Physical, 173[1] (2012), pp. 41-48.

2011 3 papers · nos. 15–17

  1. Mthembu, L., Marwala, T., Friswell, M. I. and Adhikari, S., "Model selection in finite element model updating using the Bayesian evidence statistic", Mechanical Systems and Signal Processing, 25[7] (2011), pp. 2399-2412.
  2. Chowdhury, R. and Adhikari, S., "Boron nitride nanotubes as zeptogram-scale bio-nano sensors: Theoretical investigations", IEEE Transactions on Nanotechnology, 10[4] (2011), pp. 659-667.
  3. Chowdhury, R., Adhikari, S., Rees, P., Scarpa, F. and Wilks, S.P., "Graphene based bio-sensor using transport properties", Physical Review B, 83[4] (2011), pp. 045401:1-8.

2010 4 papers · nos. 11–14

  1. Adhikari, S. and Chowdhury, R., "The calibration of carbon nanotube based bio-nano sensors", Journal of Applied Physics, 107[12] (2010), pp. 124322:1-8.
  2. Friswell, M. I. and Adhikari, S., "Structural health monitoring using shaped sensors", Mechanical System and Signal Processing, 24[3] (2010), pp. 623-635.
  3. Khalil, M., Sarkar, A. and Adhikari, S., "Tracking noisy limit cycle oscillation with nonlinear filters", Journal of Sound and Vibration, 329[2] (2010), pp. 150-170.
  4. Adhikari, S. and Friswell, M. I., "Distributed parameter model updating using the Karhunen-Loève expansion", Mechanical System and Signal Processing, 24[2] (2010), pp. 326-339.

2009 4 papers · nos. 7–10

  1. Chowdhury, R., Adhikari, S. and Mitchell, J., "Vibrating carbon nanotube based bio-sensors", Physica E: Low-dimensional Systems and Nanostructures, 42[2] (2009), pp. 104-109.
  2. du Bois, J. L., Lieven, N. A. J. and Adhikari, S. "Error analysis in trifilar inertia measurements", Experimental Mechanics, 49[4] (2009), pp. 533-540.
  3. Khalil, M., Sarkar, A. and Adhikari, S., "Nonlinear filters for chaotic oscillatory systems", Nonlinear Dynamics, 55[1-2] (2009), pp. 113-137.
  4. Adhikari, S. and Phani, A. Srikanth, "Experimental identification of generalized proportional viscous damping matrix", ASME Journal of Vibration and Acoustics, 131[1] (2009), pp. 011008:1-12.

2007 1 paper · no. 6

  1. Khalil, M., Adhikari, S. and Sarkar, A., "Linear system identification using proper orthogonal decomposition", Mechanical System and Signal Processing, 21[8] (2007), pp. 3123-3145.

2002 5 papers · nos. 1–5

  1. Adhikari, S. and Woodhouse, J., "Identification of damping part 3: Symmetry preserving methods", Journal of Sound and Vibration, 251[3] (2002), pp. 477-490.
  2. Adhikari, S. and Woodhouse, J., "Identification of damping part 4: Error analysis", Journal of Sound and Vibration, 251[3] (2002), pp. 491-504.
  3. Adhikari, S., "Lancaster's method of damping identification revisited", ASME Journal of Vibration and Acoustics, 124[4] (2002), pp. 617-627.
  4. Adhikari, S. and Woodhouse, J., "Identification of damping part 1: Viscous damping", Journal of Sound and Vibration, 243[1] (2001), pp. 43-61.
  5. Adhikari, S. and Woodhouse, J., "Identification of damping part 2: Non-viscous damping", Journal of Sound and Vibration, 243[1] (2001), pp. 63-88.