Rajesh Joshi
Decision Sciences · The Ohio State University
Publications
42
Citations
916
Est. group size
—
Recurring co-author estimate
Active years
10
Publishing since 2016
Rajesh Joshi works on mathematical methods for multi-criteria decision making, developing new ways to measure uncertainty and disagreement (using concepts like fuzzy sets, intuitionistic fuzzy sets, and information/divergence measures) that help rank or choose among options when information is imprecise. These methods are applied to practical problems such as supplier selection, fault detection in machinery, medical diagnosis, pattern recognition, and forecasting. Prospective students would be working on theoretical development of decision-making formulas and their application to real-world selection or classification problems.
Output was high in 2017-2018, dropped to a low, steady rate of about 2 papers/year from 2019-2022, had a gap in 2023, then rebounded sharply in 2024 before tapering slightly in 2025.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Multi-criteria decision making based on novel fuzzy knowledge measures
Granular Computing · 2022
- Novel exponential fuzzy information measures
Soft Computing · 2022
- A novel VIKOR approach based on weighted correlation coefficients and picture fuzzy information for multicriteria decision making
Granular Computing · 2021
- Multi-criteria decision-making based on bi-parametric exponential fuzzy information measures and weighted correlation coefficients
Granular Computing · 2021
- A novel decision-making method using R-Norm concept and VIKOR approach under picture fuzzy environment
Expert Systems with Applications · 2020
- A new picture fuzzy information measure based on Tsallis–Havrda–Charvat concept with applications in presaging poll outcome
Computational and Applied Mathematics · 2020
- A new multi-criteria decision-making method based on intuitionistic fuzzy information and its application to fault detection in a machine
Journal of Ambient Intelligence and Humanized Computing · 2019
- Jensen-Tsalli’s Intuitionistic Fuzzy Divergence Measure and Its Applications in Medical Analysis and Pattern Recognition
International Journal of Uncertainty Fuzziness and Knowledge-Based Systems · 2019
- A Novel Fuzzy Decision-Making Method Using Entropy Weights-Based Correlation Coefficients Under Intuitionistic Fuzzy Environment
International Journal of Fuzzy Systems · 2018
- A dissimilarity Jensen-Shannon divergence measure for intuitionistic fuzzy sets
International Journal of Intelligent Systems · 2018
- An intuitionistic fuzzy $$(\delta , \gamma )$$ ( δ , γ ) -norm entropy with its application in supplier selection problem
Computational and Applied Mathematics · 2018
- A New Parametric Intuitionistic Fuzzy Entropy and its Applications in Multiple Attribute Decision Making
International Journal of Applied and Computational Mathematics · 2018
- Exponential Jensen intuitionistic fuzzy divergence measure with applications in medical investigation and pattern recognition
Soft Computing · 2018
- A dissimilarity measure based on Jensen Shannon divergence measure
International Journal of General Systems · 2018
- An intuitionistic fuzzy information measure of order- $$(\alpha , \beta )$$ ( α , β ) with a new approach in supplier selection problems using an extended VIKOR method
Journal of Applied Mathematics and Computing · 2018
- Journal of High Energy Physics×10
- Computational and Applied Mathematics×4
- Granular Computing×3
- International Journal of Fuzzy Systems×2
- Soft Computing×2
- Junyi Chai
Decision Sciences · Purdue University West Lafayette
- Mohamed Omar
Engineering · The Ohio State University
- A. Basnet
Physics and Astronomy · The Ohio State University
- A. Belyaev
Physics and Astronomy · The Ohio State University
- A. Babaev
Physics and Astronomy · The Ohio State University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 19, 2026.
Claim or correct this profile