Shubhankar Roy Chowdhury
Indian Institute of Science
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Publication
Featured researches published by Shubhankar Roy Chowdhury.
Physica D: Nonlinear Phenomena | 2014
Saikat Sarkar; Shubhankar Roy Chowdhury; Mamatha Venugopal; Ram Mohan Vasu; Debasish Roy
A Monte Carlo filter, based on the idea of averaging over characteristics and fashioned after a particle-based time-discretized approximation to the Kushner-Stratonovich (KS) nonlinear filtering equation, is proposed. A key aspect of the new filter is the gain-like additive update, designed to approximate the innovation integral in the KS equation and implemented through an annealing-type iterative procedure, which is aimed at rendering the innovation (observation prediction mismatch) for a given time-step to a zero-mean Brownian increment corresponding to the measurement noise. This may be contrasted with the weight-based multiplicative updates in most particle filters that are known to precipitate the numerical problem of weight collapse within a finite-ensemble setting. A study to estimate the a-priori error bounds in the proposed scheme is undertaken. The numerical evidence, presently gathered from the assessed performance of the proposed and a few other competing filters on a class of nonlinear dynamic system identification and target tracking problems, is suggestive of the remarkably improved convergence and accuracy of the new filter
Physical Review E | 2015
Saikat Sarkar; Shubhankar Roy Chowdhury; Debasish Roy; Ram Mohan Vasu
Starting with a micropolar formulation, known to account for nonlocal microstructural effects at the continuum level, a generalized Langevin equation (GLE) for a particle, describing the predominant motion of a localized region through a single displacement degree of freedom, is derived. The GLE features a memory-dependent multiplicative or internal noise, which appears upon recognizing that the microrotation variables possess randomness owing to an uncertainty principle. Unlike its classical version, the present GLE qualitatively reproduces the experimentally measured fluctuations in the steady-state mean square displacement of scattering centers in a polyvinyl alcohol slab. The origin of the fluctuations is traced to nonlocal spatial interactions within the continuum, a phenomenon that is ubiquitous across a broad class of response regimes in solids and fluids. This renders the proposed GLE a potentially useful model in such cases.
International Journal of Solids and Structures | 2015
Shubhankar Roy Chowdhury; Md. Masiur Rahaman; Debasish Roy; Narayan K. Sundaram
A state-based micropolar peridynamic theory for linear elastic solids is proposed. The main motivation is to introduce additional micro-rotational degrees of freedom to each material point and thus naturally bring in the physically relevant material length scale parameters into peridynamics. Non-ordinary type modeling via constitutive correspondence is adopted here to define the micropolar peridynamic material. Along with a general three dimensional model, homogenized one dimensional Timoshenko type beam models for both the proposed micropolar and the standard non-polar peridynamic variants are derived. The efficacy of the proposed models in analyzing continua with length scale effects is established via numerical simulations of a few beam and plane-stress problems
International Journal of Solids and Structures | 2016
Shubhankar Roy Chowdhury; Pranesh Roy; Debasish Roy; J. N. Reddy
Journal of Applied Mechanics | 2016
Shubhankar Roy Chowdhury; Debasish Roy; J. N. Reddy
Journal of Applied Mechanics | 2016
Shubhankar Roy Chowdhury; Gurudas Kar; Debasish Roy; J. N. Reddy
Journal of The Mechanics and Physics of Solids | 2016
Shubhankar Roy Chowdhury; Debasish Roy; J. N. Reddy; A.R. Srinivasa
Continuum Mechanics and Thermodynamics | 2018
Shubhankar Roy Chowdhury; Gurudas Kar; Debasish Roy; J. N. Reddy
International Journal of Plasticity | 2018
Shubhankar Roy Chowdhury; Debasish Roy
European Journal of Mechanics A-solids | 2018
Sanhita Das; Shubhankar Roy Chowdhury; Debasish Roy