Sujata Ghosh

dblp:43/4591 · DBLP profile ↗
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19ranked-venue papers
7as first author
9since 2021 · last 2026
0000-0002-6051-464XORCID · conflict

Domains — the database's venue-derived domains; a paper can count in several

Artificial intelligence and machine learning · 13 · 4 first-author · 5 since 2021Theory of computation · 9 · 3 first-author · 7 since 2021Applied, interdisciplinary, general and emerging computing · 2 · 1 first-authorGraphics, computer vision, multimedia, augmented reality and games · 1 · 1 since 2021
YearPublicationVenuePosition
2026 Cops Only Need Factual Knowledge to Catch Robbers
abstract
The cops and robber game is a well-studied model for investigating pursuit-evasion phenomena, among many others. Although many variants of this game have been studied in the literature, the epistemic assumptions underlying their game designs are often left implicit. In this work, we focus on the imperfect information version of the game and re-examine it from an epistemic perspective to explore the levels of player knowledge that are essential for playing the game. To facilitate our investigations on these knowledge levels, we discuss two kinds of strategies for the players, history-based and positional, and show what matters in this context. Our study eventually sheds light on the implicit assumptions prevalent in the existing literature in terms of player knowledge while playing the game, and provides a foundation for further studies on epistemically informed game structures.
Dazhu Li, Sujata Ghosh
KR2
2026 A modal approach towards substitutions
Yaxin Tu, Sujata Ghosh, Fenrong Liu, Dazhu Li
Ann. Pure Appl. Log.2
2025 Reasoning About Knowledge on Regular Expressions Is 2EXPTIME-Complete
abstract
Logics for reasoning about knowledge and actions have seen many applications in various domains of multi-agent systems, including epistemic planning. Change of knowledge based on observations about the surroundings forms a key aspect in such planning scenarios. Public Observation Logic (POL) is a variant of public announcement logic for reasoning about knowledge that gets updated based on public observations. Each state in an epistemic (Kripke) model is equipped with a set of expected observations. These states evolve as the expectations get matched with the actual observations. In this work, we prove that the satisfiability problem of POL is 2EXPTIME-complete.
Avijeet Ghosh, Sujata Ghosh, François Schwarzentruber
KR2
2024 Bisimulation in model-changing modal logics: An algorithmic study
abstract
Abstract We discuss the notion of bisimulation in various model-changing modal logics and provide an algorithmic study of the same. We provide a general algorithm which gives an overall procedure to check whether two models are bisimilar in all these logics. Through our algorithmic analyses we provide a PSPACE upper bound of the bisimulation/model comparison problem of all these modal logics. We also provide some insight into the higher complexity of the model comparison problem for these logics compared to that for the basic modal logic.
Sujata Ghosh, Shreyas Gupta
J. Log. Comput.1
2023 On Simple Expectations and Observations of Intelligent Agents: A Complexity Study
abstract
Public observation logic (POL) reasons about agent expectations and agent observations in various real world situations. The expectations of agents take shape based on certain protocols about the world around and they remove those possible scenarios where their exceptions and observations do not match. This in turn influences the epistemic reasoning of these agents. In this work, we study the computational complexity of the satisfaction problems of various fragments of POL. In the process, we also highlight the inevitable link that these fragments have with the well-studied Public announcement logic.
Sourav Chakraborty 0001, Avijeet Ghosh, Sujata Ghosh, François Schwarzentruber
KR3
2022 On Verifying Expectations and Observations of Intelligent Agents
abstract
Public observation logic (POL) is a variant of dynamic epistemic logic to reason about agent expectations and agent observations. Agents have certain expectations, regarding the situation at hand, that are actuated by the relevant protocols, and they eliminate possible worlds in which their expectations do not match with their observations. In this work, we investigate the computational complexity of the model checking problem for POL and prove its PSPACE-completeness. We also study various syntactic fragments of POL. We exemplify the applicability of POL model checking in verifying different characteristics and features of an interactive system with respect to the distinct expectations and (matching) observations of the system. Finally, we provide a discussion on the implementation of the model checking algorithms.
Sourav Chakraborty 0001, Avijeet Ghosh, Sujata Ghosh, François Schwarzentruber
IJCAI3
2022 Rely more or less, for better or for worse: Intertwining reliability and preferences
abstract
Abstract Dealing with preferences is a ubiquitous part of our daily lives, and thus, preference forms an integral part of our daily decision-making processes. If we consider preferences among groups of agents, deliberation often leads to changes in preferences of an agent, influenced by the opinions of others, depending on how reliable these agents are according to the agent under consideration. Sometimes, it also leads to changes in the opposite direction, i.e. reliability over agents gets updated depending on their preferences. There are various formal studies of preference change based on reliability and/or trust, but not the other way around—this work contributes to the formal study of the latter aspect, i.e. on reliability change based on agent preferences. In process, some policies of preference change based on agent reliabilities are also discussed. We introduce a novel formal study of the relevant changes in agent reliabilities in decision-making scenarios, which is an integral part of artificial intelligence studies in the current day. A two-dimensional hybrid language is proposed to describe such processes, and axiomatizations and decidability are discussed.
Sujata Ghosh, Katsuhiko Sano
J. Log. Comput.1
2021 Receiving Messages in Their Correct Order: Analyzing Broadcast Protocols in Dynamic Epistemic Logics
Spandan Das, Sujata Ghosh
ICAART (2)2
2021 On the Subtle Nature of a Simple Logic of the Hide and Seek Game
Dazhu Li, Sujata Ghosh, Fenrong Liu, Yaxin Tu
WoLLIC2
2019 Cross-cultural differences in playing centipede-like games with surprising opponents
Sujata Ghosh, Rineke Verbrugge, Harmen de Weerd, Aviad Heifetz
CogSci1
2017 Strategy Composition in Dynamic Games with Simultaneous Moves
Sujata Ghosh, Neethi Konar, Ramaswamy Ramanujam
ICAART (2)1
2017 Valuing Others' Opinions: Preference, Belief and Reliability Dynamics
Sujata Ghosh, Katsuhiko Sano
ICAART (2)1
2015 How do adults reason about their opponent? Typologies of players in a turn-taking game
Tamoghna Halder, Khyati Sharma, Sujata Ghosh, Rineke Verbrugge
CogSci3
2014 Hidden protocols: Modifying our expectations in an evolving world
Hans van Ditmarsch, Sujata Ghosh, Rineke Verbrugge, Yanjing Wang 0001
Artif. Intell.2
2013 Multi-player Multi-issue Negotiation with Mediator using CP-nets
Thiri Haymar Kyaw, Sujata Ghosh, Rineke Verbrugge
ICAART (1)2
2013 Reaching Your Goals without Spilling the Beans: Boolean Secrecy Games
Nils Bulling, Sujata Ghosh, Rineke Verbrugge
PRIMA2
2012 Decision Support for Extensive Form Negotiation Games
Sujata Ghosh, Thiri Haymar Kyaw, Rineke Verbrugge
ISMIS1
2011 Hidden protocols
abstract
When agents know a protocol, this leads them to have expectations about future observations. Agents can update their knowledge by matching their actual observations with the expected ones. They eliminate states where they do not match. In this paper, we study how agents perceive protocols that are not commonly known, and propose a logic to reason about knowledge in such scenarios.
Hans van Ditmarsch, Sujata Ghosh, Rineke Verbrugge, Yanjing Wang 0001
TARK2
2004 Nonmonotonic Proof Systems: Algebraic Foundations
Sujata Ghosh, Mihir K. Chakraborty
Fundam. Informaticae1