VLDB 2026 Research / reviewers in the wild / expert
Benay Kumar Ray
dblp:157/6677
· DBLP profile ↗
5ranked-venue papers
3as first author
4since 2021 · last 2025
0000-0001-9842-6840ORCID · corroborated
Domains — the database's venue-derived domains; a paper can count in several
Software engineering, systems software and programming languages · 3 · 1 first-author · 3 since 2021Systems, architecture and hardware · 2 · 2 first-author · 1 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2025 | Energy Efficient Resource Sharing in Trustworthy Federated Cloud Environment: A Bayesian Game and Double Auction Based ApproachabstractCloud federation enhances cloud services by enabling resource sharing and cooperation among multiple Cloud Service Providers (CSPs) for improved performance. However, one of the significant challenges for CSPs within the federation is maintaining coordination among heterogeneous CSPs. Additionally, reducing the presence of pernicious CSPs within the federation will allow the federation to deliver services with committed Quality of Service (QoS). Moreover, minimising the energy while migrating virtual machines within the federation will allow an increase in the revenue of CSPs within the federation. This paper proposed a Bayesian game-based model for detecting pernicious CSPs within the federation and developed a greedy double-auction-based resource-sharing mechanism. Here, the proposed mechanism ensures that CSPs achieve high satisfaction levels and guarantee a fair, efficient, and energy-aware resource-sharing environment among CSPs in a federation. Simulated results of the proposed Energy, Pernicious, and QoS Greedy Double Auction model (EPQ-GDA) are extensively compared with other competing models. The results demonstrate the effectiveness and superiority of our proposed method over the nearest competitor, with an average improvement in satisfaction of 2.61% for buyer CSPs and 3.67% for seller CSPs, 3.77% over energy, and 14.90% over perniciousness. Further simulated results also show that the EPQ-GDA satisfies important auction properties such as truthfulness, individual rationality, and budget balance. Sandeep Singh Sikarwar, Rakesh Kumar 0011, Benay Kumar Ray |
IEEE Trans. Serv. Comput. | 3 |
| 2022 | Proactive Fault-Tolerance Technique to Enhance Reliability of Cloud Service in Cloud Federation EnvironmentabstractCloud federation is a new computing paradigm that has paved the way for cloud service providers (CSPs) to offer their unused resources (virtual machine) to other CSPs when their resource demands are low. Federation also allows CSPs to outsource their resource requests to other CSPs when their computing resources’ demands are high. Thus, in cloud federation environment reliability and availability of services offered by service providers increase as the CSPs are able to share their resources among themselves. Moreover, to maintain the reliability and availability of cloud services offered through federation, it is important that the computational environment of member CSPs within the federation is fault tolerant. Therefore, there is a need for fault tolerant system to guarantee cloud service reliability and availability in cloud federation environment. In this article, we propose a proactive fault tolerance system that preempts faults within the federation on the basis of CPU temperature. The fault tolerance system within the federation is modeled as a multi-objective optimization problem of maximizing profit and minimizing migration cost while redistributing resources (virtual machine) from faulty CSPs to non-faulty CSPs within the federation. To address this issue, we have also proposed an algorithm called Preference Based Fault Management (PBFM) to manage the federation in the event of faults. We perform extensive experiments to evaluate the effectiveness of our proposed mechanism and compare it with two other mechanisms MCAFM (Migration Cost Assured Fault Management) and PAFM (Profit Assured Fault Management). Results show that our proposed mechanism PBFM yields an optimized solution to the general problem of profit and migration cost trade-off in presence of faulty CSPs. Benay Kumar Ray, Avirup Saha, Sunirmal Khatua, Sarbani Roy |
IEEE Trans. Cloud Comput. | 1 |
| 2022 | Auction-Based Resource Allocation Mechanism in Federated Cloud Environment: TARAabstractThe growing market of cloud computing resulted in increased demand for cloud resources and it will become difficult for individual service providers (SPs) to fulfill all resource requests. That leads to a situation where two or more SPs may form a group (federation) and share the resources in order to fulfill the cloud users’ demand and gain economic advantage. Now, due to the formation of more than one federations by different cloud providers, it may be difficult for users to select a suitable federation who can deliver cloud services at a fair price. In this context, it is necessary to have a framework that will efficiently allocate resources of cloud federations to the users at a fair price and stop market manipulation. In this article, we propose a multi-unit double auction mechanism called TARA (Truthful DoubleAuction forResourceAllocation) that can be used to efficiently choose cloud federations for users from which they can get resources. Here, we consider a multi-seller and multi-buyer double auction mechanism for heterogeneous resources, where every buyer submits their bids and every seller places their ask (the price of a resource that is offered by a federation). TARA achieves some important properties like truthfulness (also known as incentive compatibility), individual rationality and budget balance for both buyers and sellers. TARA is also computationally efficient and posses high system efficiency. The simulation results also show that total utility of buyer is more than some existing double auction mechanisms. Asif Iqbal Middya, Benay Kumar Ray, Sarbani Roy |
IEEE Trans. Serv. Comput. | 2 |
| 2021 | Quality and Profit Assured Trusted Cloud Federation Formation: Game Theory Based ApproachabstractWith more awareness and growth in the cloud market, demands for computational resources have increased in order to provide services to the cloud users. Sometimes it is difficult for an individual cloud service provider (CSP) to meet the level of promised quality of service (QoS) and to fulfill all types of resource requests dynamically. Cloud federation has become a consolidated paradigm in which group of cooperative CSPs share their unused resources with peers to gain some economic benefit. Hence, the cloud federation overcomes the limitation of each CSP for maintaining QoS during sudden spikes in resource demand. However, the presence of untrusted CSPs degrades the QoS of the services delivered through federation. Trusted CSPs are highly reputed in the federation as they can extend their resources and services to maintain the level of committed QoS by the member CSPs of the federation. Therefore, to guarantee delivery of committed QoS, it will be necessary to form a federation with trusted CSPs only. In this paper, we present a broker based cloud federation architecture. The cloud federation formation is modeled as a hedonic coalitional game. The main objective of this work is to find the most suitable and stable federation of trusted CSPs that will maximize the satisfaction level of each individual CSP on the basis of QoS and profit. The proposed coalitional game inspired cloud federation formation (CGCFF) algorithm has been extensively compared with selected existing techniques. Simulation results show that the set of federation formed by CGCFF is Nash-stable and performs better than these techniques in terms of satisfaction, quality and profit. Benay Kumar Ray, Avirup Saha, Sunirmal Khatua, Sarbani Roy |
IEEE Trans. Serv. Comput. | 1 |
| 2019 | Toward maximization of profit and quality of cloud federation: solution to cloud federation formation problem
Benay Kumar Ray, Avirup Saha, Sunirmal Khatua, Sarbani Roy |
J. Supercomput. | 1 |