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相关论文: Cop and robber game and hyperbolicity

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In this paper, we study different variants of the Cops-and-Robber game with respect to cop- and robber\-/monotonicity. We study a visible and invisible robber and variants where the robber is lazy, thus can only move when the cops announce…

离散数学 · 计算机科学 2025-02-24 Eva Fluck , David Philipps

The cops-and-robber (CR) game has been used in mobile robotics as a discretized model (played on a graph G) of pursuit/evasion problems. The "classic" CR version is a perfect information game: the cops' (pursuer's) location is always known…

离散数学 · 计算机科学 2014-02-26 Athanasios Kehagias , Dieter Mitsche , Pawel Pralat

We consider a variant of Cops and Robbers wherein each edge traversed by the robber is deleted from the graph. The focus is on determining the minimum number of cops needed to capture a robber on a graph $G$, called the {\em bridge-burning…

组合数学 · 数学 2018-12-27 William B. Kinnersley , Eric Peterson

We consider a variant of the game of Cops and Robbers, called Lazy Cops and Robbers, where at most one cop can move in any round. We investigate the analogue of the cop number for this game, which we call the lazy cop number. Lazy Cops and…

组合数学 · 数学 2013-12-09 Deepak Bal , Anthony Bonato , William B. Kinnersley , Paweł Prałat

$\delta$-hyperbolic graphs, originally conceived by Gromov in 1987, occur often in many network applications; for fixed $\delta$, such graphs are simply called hyperbolic graphs and include non-trivial interesting classes of "non-expander"…

计算复杂性 · 计算机科学 2018-08-20 Bhaskar DasGupta , Marek Karpinski , Nasim Mobasheri , Farzaneh Yahyanejad

We consider a variant of Cops and Robbers in which the robber may traverse as many edges as he likes in each turn, with the constraint that he cannot pass through any vertex occupied by a cop. We study this model on several classes of…

组合数学 · 数学 2022-05-17 William B. Kinnersley , Nikolas Townsend

We investigate extremal graphs related to the game of Cops and Robbers. We focus on graphs where a single cop can catch the robber; such graphs are called cop-win. The capture time of a cop-win graph is the minimum number of moves the cop…

组合数学 · 数学 2019-03-21 David Offner , Kerry Ojakian

We consider a variation of the Cops and Robber game where the cops can only see the robber when the distance between them is at most a fixed parameter $\ell$. We consider the basic consequences of this definition for some simple graph…

离散数学 · 计算机科学 2017-08-25 N. E. Clarke , D. Cox , C. Duffy , D. Dyer , S. Fitzpatrick , M. E. Messinger

In this paper we study the concurrent cops and robber (CCCR) game. CCCR follows the same rules as the classical, turn-based game, except for the fact that the players move simultaneously. The cops' goal is to capture the robber and the…

离散数学 · 计算机科学 2015-06-12 Georgios Konstantinidis , Athanasios Kehagias

Here we merge the two fields of Cops and Robbers and Graph Pebbling to introduce the new topic of Cops and Robbers Pebbling. Both paradigms can be described by moving tokens (the cops) along the edges of a graph to capture a special token…

组合数学 · 数学 2026-02-10 Nancy Clarke , Joshua Forkin , Glenn Hurlbert

We survey results at the intersection of topological graph theory and the game of Cops and Robbers, focusing on results, conjectures, and open problems for the cop number of a graph embedded on a surface. After a discussion on results for…

组合数学 · 数学 2018-04-24 Anthony Bonato , Bojan Mohar

In the game of Cops and Robbers, one of the most useful results is that an isometric path in a graph can be guarded by one cop. In this paper, we introduce the concept of wide shadow in a subgraph, and use it to characterize all 1-guardable…

组合数学 · 数学 2024-06-04 Sebastián González Hermosillo de la Maza , Bojan Mohar

In the cops and robber games played on a simple graph $G$, Aigner and Fromme's lemma states that one cop can guard a shortest path in the sense that the robber cannot enter this path without getting caught after finitely many steps. In this…

组合数学 · 数学 2018-04-11 Linyuan Lu , Zhiyu Wang

We discuss winning possibilities of players in various variants of cops and robber game played on large random graphs, a testbed for various kinds of network queries, search problems in particular. We explore the use of logic frameworks to…

计算机科学中的逻辑 · 计算机科学 2025-12-01 Sourav Chakraborty , Sujata Ghosh , Smiha Samanta

A gambler moves between the vertices $1, \ldots, n$ of a graph using the probability distribution $p_{1}, \ldots, p_{n}$. Multiple cops pursue the gambler on the graph, only being able to move between adjacent vertices. We investigate the…

离散数学 · 计算机科学 2016-10-11 Jesse Geneson

We consider the pursuit and evasion game on finite, connected, undirected graphs known as cops and robbers. Meyniel conjectured that for every graph on n vertices a rootish number of cops can win the game. We prove that this holds up to a…

组合数学 · 数学 2008-05-20 Bela Bollobas , Gabor Kun , Imre Leader

We study a variation of the classical pursuit-evasion game of Cops and Robbers in which agents are required to move to an adjacent vertex on every turn. We explore how the minimum number of cops needed to catch the robber can change when…

组合数学 · 数学 2018-08-22 Ilya Gromovikov , William B. Kinnersley , Ben Seamone

In the `Covering' pursuit game on a graph, a robber and a set of cops play alternately, with the cops each moving to an adjacent vertex (or not moving) and the robber moving to a vertex at distance at most 2 from his current vertex. The aim…

组合数学 · 数学 2025-04-22 Benjamin Gillott

Cops and Robber is a well-studied two-player pursuit-evasion game played on a graph, where a group of cops tries to capture the robber. The \emph{cop number} of a graph is the minimum number of cops required to capture the robber.…

离散数学 · 计算机科学 2025-04-11 Sandip Das , Harmender Gahlawat

In many variants of the game of Cops and Robbers on graphs, multiple cops play against a single robber. In 2019, Cox and Sanaei introduced a variant of the game that gives the robber a more active role than simply evading the cop. In their…

组合数学 · 数学 2022-05-17 Joshua Carlson , Meghan Halloran , Carolyn Reinhart