Kaustav Bose

dblp:186/7819 · DBLP profile ↗
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17ranked-venue papers
10as first author
10since 2021 · last 2023
0000-0003-3579-1941ORCID · verified

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

Theory of computation · 10 · 6 first-author · 6 since 2021Systems, architecture and hardware · 1 · 1 first-author · 1 since 2021Security and privacy · 1 · 1 since 2021Graphics, computer vision, multimedia, augmented reality and games · 1 · 1 since 2021
YearPublicationVenuePosition
2023 Memory optimal dispersion by anonymous mobile robots
Archak Das, Kaustav Bose, Buddhadeb Sau
Discret. Appl. Math.2
2023 Complexity of Maximum Cut on Interval Graphs
Ranendu Adhikary, Kaustav Bose, Satwik Mukherjee, Bodhayan Roy
Discret. Comput. Geom.2
2023 Mutual visibility by fat robots with slim omnidirectional camera
Kaustav Bose, Abhinav Chakraborty 0001, Krishnendu Mukhopadhyaya
J. Parallel Distributed Comput.1
2022 Distributed localization of wireless sensor network using communication wheel
Kaustav Bose, Manash Kumar Kundu, Ranendu Adhikary, Buddhadeb Sau
Inf. Comput.1
2022 Mutual visibility on grid by asynchronous luminous robots
Ranendu Adhikary, Kaustav Bose, Manash Kumar Kundu, Buddhadeb Sau
Theor. Comput. Sci.2
2022 Exploring a dynamic ring without landmark
Archak Das, Kaustav Bose, Buddhadeb Sau
Theor. Comput. Sci.2
2021 Complexity of Maximum Cut on Interval Graphs
abstract
We resolve the longstanding open problem concerning the computational complexity of Max Cut on interval graphs by showing that it is NP-complete.
Ranendu Adhikary, Kaustav Bose, Satwik Mukherjee, Bodhayan Roy
SoCG2
2021 Pattern Formation by Robots with Inaccurate Movements
abstract
Arbitrary Pattern Formation is a fundamental problem in autonomous mobile robot systems. The problem asks to design a distributed algorithm that moves a team of autonomous, anonymous and identical mobile robots to form any arbitrary pattern F given as input. In this paper, we study the problem for robots whose movements can be inaccurate. Our movement model assumes errors in both direction and extent of the intended movement. Forming the given pattern exactly is not possible in this setting. So we require that the robots must form a configuration which is close to the given pattern F. We call this the Approximate Arbitrary Pattern Formation problem. With no agreement in coordinate system, the problem is unsolvable, even by fully synchronous robots, if the initial configuration 1) has rotational symmetry and there is no robot at the center of rotation or 2) has reflectional symmetry and there is no robot on the reflection axis. From all other initial configurations, we solve the problem by 1) oblivious, silent and semi-synchronous robots and 2) oblivious, asynchronous robots that can communicate using externally visible lights.
Kaustav Bose, Archak Das, Buddhadeb Sau
OPODIS1
2021 Exploring a Dynamic Ring Without Landmark
Archak Das, Kaustav Bose, Buddhadeb Sau
SSS2
2021 Arbitrary pattern formation by asynchronous opaque robots with lights
Kaustav Bose, Manash Kumar Kundu, Ranendu Adhikary, Buddhadeb Sau
Theor. Comput. Sci.1
2020 Distributed Localization of Wireless Sensor Network Using Communication Wheel
Kaustav Bose, Manash Kumar Kundu, Ranendu Adhikary, Buddhadeb Sau
ALGOSENSORS1
2020 Arbitrary pattern formation on infinite grid by asynchronous oblivious robots
Kaustav Bose, Ranendu Adhikary, Manash Kumar Kundu, Buddhadeb Sau
Theor. Comput. Sci.1
2019 Positional Encoding by Robots with Non-rigid Movements
Kaustav Bose, Ranendu Adhikary, Manash Kumar Kundu, Buddhadeb Sau
SIROCCO1
2019 Arbitrary Pattern Formation by Asynchronous Opaque Robots with Lights
Kaustav Bose, Manash Kumar Kundu, Ranendu Adhikary, Buddhadeb Sau
SIROCCO1
2019 Arbitrary Pattern Formation on Infinite Grid by Asynchronous Oblivious Robots
Kaustav Bose, Ranendu Adhikary, Manash Kumar Kundu, Buddhadeb Sau
WALCOM1
2018 Mutual Visibility by Asynchronous Robots on Infinite Grid
Ranendu Adhikary, Kaustav Bose, Manash Kumar Kundu, Buddhadeb Sau
ALGOSENSORS2
2018 Optimal Gathering by Asynchronous Oblivious Robots in Hypercubes
Kaustav Bose, Manash Kumar Kundu, Ranendu Adhikary, Buddhadeb Sau
ALGOSENSORS1