VLDB 2026 Research / reviewers in the wild / expert
Gleb Polevoy
dblp:79/8472
· DBLP profile ↗
12ranked-venue papers
7as first author
4since 2021 · last 2026
0000-0002-5260-7811ORCID · corroborated
Domains — the database's venue-derived domains; a paper can count in several
Artificial intelligence and machine learning · 5 · 5 first-author · 2 since 2021Theory of computation · 3 · 2 first-author · 2 since 2021Systems, architecture and hardware · 2Computer networks · 2Graphics, computer vision, multimedia, augmented reality and games · 2 · 2 first-author · 1 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2026 | When effort may fail: Equilibria of shared effort with a thresholdabstractPeople, robots, and companies mostly divide time and effort among projects, and shared effort games model people investing resources in public endeavours and sharing the generated values. In linear θ sharing (effort) games, a project’s value is linear in the total contribution, thus modelling predictable, uniform, and scalable activities. The threshold θ for effort defines which contributors win and receive their share, equal share modelling standard salaries, equity-minded projects, etc. Thresholds between 0 and 1 model games such as paper co-authorship and shared assignments, where a minimum positive contribution is required for sharing in the value. We constructively characterise the conditions for the existence of a pure equilibrium for θ ∈ { 0,1 } , and for two-player games with a general threshold, and find the prices of anarchy and stability. We also provide existence and efficiency results for more than two players, and use generalised fictitious play simulations to show when a pure equilibrium exists and what its efficiency is. We propose a method for studying solution concepts by refining a solution concept and finding a large natural subclass of games where the refinement coincides with the original solution concept (Nash, in this case). This means that the original concept narrows down to a more demanding concept on certain games, providing new insights for comparing both concepts. We also prove mixed equilibria always exist and bound their efficiency. Gleb Polevoy, Stojan Trajanovski, Mathijs de Weerdt |
Discret. Appl. Math. | 1 |
| 2026 | Attaining equilibria using control sets
Gleb Polevoy, Jonas Schweichhart |
Theor. Comput. Sci. | 1 |
| 2024 | Attaining Equilibria Using Control Sets
Gleb Polevoy, Jonas Schweichhart |
COCOA (1) | 1 |
| 2022 | Fair, Individually Rational and Cheap AdjustmentabstractConsider the practical goal of making a desired action profile played, when the planner can only change the payoffs, bound by stringent constraints. Applications include motivating people to choose the closest school, the closest subway station, or to coordinate on a communication protocol or an investment strategy. Employing subsidies and tolls, we adjust the game so that choosing this predefined action profile becomes strictly dominant. Inspired mainly by the work of Monderer and Tennenholtz, where the promised subsidies do not materialise in the not played profiles, we provide a fair and individually rational game adjustment, such that the total outside investments sum up to zero at any profile, thereby facilitating easy and frequent usage of our adjustment without bearing costs, even if some players behave unexpectedly. The resultant action profile itself needs no adjustment. Importantly, we also prove that our adjustment minimises the general transfer among all such adjustments, counting the total subsidising and taxation. Gleb Polevoy, Marcin Dziubinski |
IJCAI | 1 |
| 2019 | Measuring the efficiency of SDN mitigations against attacks on computer infrastructures
Ralph Koning, Ben de Graaff, Gleb Polevoy, Robert J. Meijer, Cees T. A. M. de Laat, Paola Grosso |
Future Gener. Comput. Syst. | 3 |
| 2019 | Inter-Datacenter Scheduling of Large Data FlowsabstractInter-datacenter transfers of non-interactive but timely large flows over a private (managed) network is an important problem faced by many cloud service providers. The considered flows are non-interactive because they do not explicitly target the end users. However, most of them must be performed on a timely basis and are associated with a deadline. We propose to schedule these flows by a centralized controller, which determines when to transmit each flow and which path to use. Two scheduling models are presented in this paper. In the first, the controller also determines the rate of each flow, while in the second bandwidth is assigned by the network according to the TCP rules. We develop scheduling algorithms for both models and compare their complexity and performance. Reuven Cohen, Gleb Polevoy |
IEEE Trans. Cloud Comput. | 2 |
| 2018 | Removing Undesirable Flows by Edge Deletion
Gleb Polevoy, Stojan Trajanovski, Paola Grosso, Cees T. A. M. de Laat |
COCOA | 1 |
| 2017 | Filtering Undesirable Flows in Networks
Gleb Polevoy, Stojan Trajanovski, Paola Grosso, Cees T. A. M. de Laat |
COCOA (1) | 1 |
| 2016 | The Game of Reciprocation HabitsabstractPeople often have reciprocal habits, almost automatically responding to others' actions. A robot who interacts with humans may also reciprocate, in order to come across natural and be predictable. We aim to facilitate decision support that advises on utility-efficient habits in these interactions. To this end, given a model for reciprocation behavior with parameters that represent habits, we define a game that describes what habit one should adopt to increase the utility of the process. This paper concentrates on two agents. The used model defines that an agent's action is a weighted combination of the other's previous actions (reacting) and either i) her innate kindness, or ii) her own previous action (inertia). In order to analyze what happens when everyone reciprocates rationally, we define a game where an agent may choose her habit, which is either her reciprocation attitude (i or ii), or both her reciprocation attitude and weight. We characterize the Nash equilibria of these games and consider their efficiency. We find that the less kind agents should adjust to the kinder agents to improve both their own utility as well as the social welfare. This constitutes advice on improving cooperation and explains real life phenomena in human interaction, such as the societal benefits from adopting the behavior of the kindest person, or becoming more polite as one grows up. Gleb Polevoy, Mathijs de Weerdt, Catholijn M. Jonker |
ECAI | 1 |
| 2015 | Bandwidth allocation in cellular networks with multiple interferences
Reuven Bar-Yehuda, Gleb Polevoy, Dror Rawitz |
Discret. Appl. Math. | 2 |
| 2013 | On the Admission of Dependent Flows in Powerful Sensor NetworksabstractIn this paper, we define and study a new problem, referred to as the Dependent Unsplittable Flow Problem (D-UFP). We present and discuss this problem in the context of large-scale powerful (radar/camera) sensor networks, but we believe it has important applications on the admission of large flows in other networks as well. In order to optimize the selection of flows transmitted to the gateway, D-UFP takes into account possible dependencies between flows. We show that D-UFP is more difficult than NP-hard problems for which no good approximation is known. Then, we address two special cases of this problem: the case where all the sensors have a shared channel and the case where the sensors form a mesh and route to the gateway over a spanning tree. Reuven Cohen, Ilia Nudelman, Gleb Polevoy |
IEEE/ACM Trans. Netw. | 3 |
| 2012 | On the admission of dependent flows in powerful sensor networksabstractIn this paper we define and study a new problem, referred to as the Dependent Unsplittable Flow Problem (D-UFP). We present and discuss this problem in the context of large-scale powerful (radar/camera) sensor networks, but we believe it has important applications on the admission of large flows in other networks as well. In order to optimize the selection of flows transmitted to the gateway, D-UFP takes into account possible dependencies between flows. We show that D-UFP is more difficult than NP-hard problems for which no good approximation is known. Then, we address two special cases of this problem: the case where all the sensors have a shared channel and the case where the sensors form a mesh and route to the gateway over a spanning tree. Reuven Cohen, Ilia Nudelman, Gleb Polevoy |
INFOCOM | 3 |