Yasin Mobasserfar

Ph.D. holder from Sharif University of Technology, focusing on statistical and probabilistic modeling of random phenomena using Bayesian inference methods and developed a mathematical models of interacting physics.

Research Expertise

Civil and Structural Engineering
Computer Science Applications
Mechanical Engineering
Aerospace Engineering
Control and Systems Engineering
Signal Processing

About

As a dedicated problem solver, I thrive on employing mathematical tools and engineering insights to tackle complex, real-world challenges. In my Ph.D. at Sharif University of Technology, I focused on statistical and probabilistic modeling of random phenomena using Bayesian inference methods. Additionally, in my master’s thesis, I developed a mathematical model of interacting physics involving structural dynamics, external fluid, and sloshing.

Publications

Skew-normal log-volatility model of road surface profile

Mechanical Systems and Signal Processing / Sep 01, 2022

Mobasserfar, Y., Adibnazari, S., & Shariyat, M. (2022). Skew-normal log-volatility model of road surface profile. Mechanical Systems and Signal Processing, 177, 109236. https://doi.org/10.1016/j.ymssp.2022.109236

Education

Sharif University of Technology

Ph.D., Aerospace Engineering / September, 2022

Tehran

Sharif University of Technology

M.Sc., Aerospace Engineering / September, 2014

Tehran

Sharif University of Technology

B.Sc., Aerospace Engineering / September, 2012

Tehran

Experience

Freelancer

Engineer/Researcher / October, 2022Present

Developed specialized applications with GUI in C# and Matlab

Sharif University of Technology

Research Assistant / October, 2014September, 2022

- Developed a novel model of road roughness, as a stochastic volatility random process - Signal Processing and Bayesian inference - Statistical and probabilistic analysis of time series and developing generative models based on the real life data

HadidAzar

Cofounder/CTO / July, 2016May, 2021

- Designed topology optimized structures in different projects for enhanced stiffness and reduced weight - Modelled and simulated physical phenomena including but not limited to laminate composite failure and metal forming, using commercial FE softwares. - Analyzed complex assemblies in terms of stress, displacement, normal modes, and frequency response

Sharif University of Technology

Research Assistant / October, 2012September, 2014

- Developed Mathematical models of multi-physics dynamic systems involving, structural dynamics, external fluid, and internal sloshing

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