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A publicação pode ser exportada nos seguintes formatos: referência da APA (American Psychological Association), referência do IEEE (Institute of Electrical and Electronics Engineers), BibTeX e RIS.

Exportar Referência (APA)
Freire, D. L., Frantz, R. Z., Basto-Fernandes, V., Battisti, G., Sawicki, S. & Roos-Frantz, F. (2025). Multi-queue Round Robin scheduling for enhanced performance in integration platforms. Revista Brasileira de Computação Aplicada. 17 (3), 100-113
Exportar Referência (IEEE)
D. L. Freire et al.,  "Multi-queue Round Robin scheduling for enhanced performance in integration platforms", in Revista Brasileira de Computação Aplicada, vol. 17, no. 3, pp. 100-113, 2025
Exportar BibTeX
@article{freire2025_1770116580856,
	author = "Freire, D. L. and Frantz, R. Z. and Basto-Fernandes, V. and Battisti, G. and Sawicki, S. and Roos-Frantz, F.",
	title = "Multi-queue Round Robin scheduling for enhanced performance in integration platforms",
	journal = "Revista Brasileira de Computação Aplicada",
	year = "2025",
	volume = "17",
	number = "3",
	doi = "10.5335/rbca.v17i3.16747",
	pages = "100-113",
	url = "https://ojs.upf.br/index.php/rbca/about"
}
Exportar RIS
TY  - JOUR
TI  - Multi-queue Round Robin scheduling for enhanced performance in integration platforms
T2  - Revista Brasileira de Computação Aplicada
VL  - 17
IS  - 3
AU  - Freire, D. L.
AU  - Frantz, R. Z.
AU  - Basto-Fernandes, V.
AU  - Battisti, G.
AU  - Sawicki, S.
AU  - Roos-Frantz, F.
PY  - 2025
SP  - 100-113
SN  - 2176-6649
DO  - 10.5335/rbca.v17i3.16747
UR  - https://ojs.upf.br/index.php/rbca/about
AB  - Contemporary enterprise environments involve a large amount of information and heterogeneous applications that must exchange data in near real time. Integration platform-as-a-service (iPaaS) solutions support this scenario by executing integration processes composed of workflows of tasks. However, current task scheduling algorithms used in integration platforms, such as First-In, First-Out (FIFO), may lead to poor performance and unfair use of computational resources  under high workloads. In this article we propose the Multi-queue Round Robin (MqRR) algorithm, a task scheduling heuristic tailored to the runtime systems of enterprise application integration platforms. MqRR organises tasks into multiple queues and applies a round-robin strategy with preemption to avoid starvation and to distribute the load more evenly among workflows. We evaluated MqRR against the traditional FIFO heuristic using an integration process simulator and three real-world integration workflows, under increasing message arrival rates. Regarding our research questions, the results show that: (RQ1) there is a workload threshold from which FIFO degrades its performance, leading the number of completed messages to approach zero; and (RQ2) MqRR improves task scheduling performance in high workload scenarios, keeping a linear growth of makespan and increasing the number of processed messages. These findings indicate that MqRR is more suitable than FIFO for integration platforms that must handle high message rates in cloud environments.
ER  -