Shailesh Tripathi

dblp:67/63 · DBLP profile ↗
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12ranked-venue papers in the field
3as first author
6since 2021 · last 2024
—ORCID · conflict

Domains — venue-derived; a paper can count in several

Knowledge Engineering, Semantic Web & Information Systems · 7Database Systems & Data Management · 4 (3 first)Information Retrieval & Web Search · 1
YearPublicationVenuePosition
2024 Human Team Behavior and Predictability in the Massively Multiplayer Online Game WOT Blitz
abstract
Massively multiplayer online games (MMOGs) played on the Web provide a new form of social, computer-mediated interactions that allow the connection of millions of players worldwide. The rules governing team-based MMOGs are typically complex and nondeterministic giving rise to an intricate dynamical behavior. However, due to the novelty and complexity of MMOGs, their behavior is understudied. In this article, we investigate the MMOG World of Tanks Blitz by using a combined approach based on data science and complex adaptive systems. We analyze data on the population level to get insights into organizational principles of the game and its game mechanics. For this reason, we study the scaling behavior and the predictability of system variables. As a result, we find a power-law behavior on the population level revealing long-range interactions between system variables. Furthermore, we identify and quantify the predictability of summary statistics of the game and its decomposition into explanatory variables. This reveals a heterogeneous progression through the tiers and identifies only a single system variable as key driver for the win rate.
Frank Emmert-Streib, Shailesh Tripathi, Matthias Dehmer
ACM Trans. Web2
2022 Analyzing Cross-impact Matrices for Managerial Decision-making Problems with the DEMATEL Approach
Shailesh Tripathi, Nadine Bachmann, Manuel Brunner, Herbert Jodlbauer
DATA1
2022 A data-centric review of deep transfer learning with applications to text data
abstract
In recent years, many applications are using various forms of deep learning models. Such methods are usually based on traditional learning paradigms requiring the consistency of properties among the feature spaces of the training and test data and also the availability of large amounts of training data, e.g., for performing supervised learning tasks. However, many real-world data do not adhere to such assumptions. In such situations transfer learning can provide feasible solutions, e.g., by simultaneously learning from data-rich source data and data-sparse target data to transfer information for learning a target task. In this paper, we survey deep transfer learning models with a focus on applications to text data. First, we review the terminology used in the literature and introduce a new nomenclature allowing the unequivocal description of a transfer learning model. Second, we introduce a visual taxonomy of deep learning approaches that provides a systematic structure to the many diverse models introduced until now. Furthermore, we provide comprehensive information about text data that have been used for studying such models because only by the application of methods to data, performance measures can be estimated and models assessed.
Samar Bashath, Nadeesha Perera, Shailesh Tripathi, Kalifa Manjang, Matthias Dehmer, Frank Emmert-Streib
Inf. Sci.3
2022 The usefulness of topological indices
Yuede Ma, Matthias Dehmer, Urs-Martin Künzi, Shailesh Tripathi, Modjtaba Ghorbani, Frank Emmert-Streib
Inf. Sci.4
2021 A Network based Approach for Reducing Variant Diversity in Production Planning and Control
Shailesh Tripathi, Sonja Strasser, Herbert Jodlbauer
DATA1
2021 Relationships between symmetry-based graph measures
Yuede Ma, Matthias Dehmer, Urs-Martin Künzi, Abbe Mowshowitz, Shailesh Tripathi, Modjtaba Ghorbani, Frank Emmert-Streib
Inf. Sci.5
2019 Approaches to Identify Relevant Process Variables in Injection Moulding using Beta Regression and SVM
Shailesh Tripathi, Sonja Strasser, Christian Mittermayr, Matthias Dehmer, Herbert Jodlbauer
DATA1
2019 Towards detecting structural branching and cyclicity in graphs: A polynomial-based approach
Matthias Dehmer, Zengqiang Chen 0001, Frank Emmert-Streib, Abbe Mowshowitz, Yongtang Shi, Shailesh Tripathi, Yusen Zhang 0002
Inf. Sci.6
2019 On the degeneracy of the Randić entropy and related graph measures
Matthias Dehmer, Zengqiang Chen 0001, Abbe Mowshowitz, Herbert Jodlbauer, Frank Emmert-Streib, Yongtang Shi, Shailesh Tripathi, Chengyi Xia
Inf. Sci.7
2018 An Approach for Adaptive Parameter Setting in Manufacturing Processes
Sonja Strasser, Shailesh Tripathi, Richard Kerschbaumer
DATA2
2018 Graph measures with high discrimination power revisited: A random polynomial approach
Matthias Dehmer, Zengqiang Chen 0001, Frank Emmert-Streib, Yongtang Shi, Shailesh Tripathi
Inf. Sci.5
2017 Highly unique network descriptors based on the roots of the permanental polynomial
Matthias Dehmer, Frank Emmert-Streib, Yongtang Shi, Monica Stefu, Shailesh Tripathi
Inf. Sci.6