Comparative Analysis of Smart Grid Routing Using Mixed-Integer SOCP and Network Calculus

Alshraa A, Fellerer J, Hielscher KS, German R (2025)


Publication Type: Conference contribution

Publication year: 2025

Journal

Publisher: Elsevier B.V.

Book Volume: 265

Pages Range: 528-535

Conference Proceedings Title: Procedia Computer Science

Event location: Leuven BE

DOI: 10.1016/j.procs.2025.07.214

Abstract

Smart grids improve how power systems are managed and integrate advanced technologies to improve efficiency and reliability. However, smart grid networks need robust, flexible communication systems to fully realize their potential services. Software-Defined Networking (SDN) offers a promising solution by providing dynamic control and optimization capabilities. Accordingly, this paper presents an optimization framework for network flow scheduling and resource allocation in smart grid communication networks, leveraging SDN to improve flexibility and performance. A two-phase process integrates Mixed-Integer Second-Order Cone Programming (MI-SOCP) and Network Calculus to guarantee efficient data transmission while satisfying strict Quality of Service (QoS) requirements. The combined use of MI-SOCP and Network Calculus ensures robust, cost-effective, and QoS-compliant communication in smart grid networks. Our approach optimizes resource utilization while maintaining predictable performance under varying network conditions, making it well-suited for the demanding operational requirements of smart grid applications.

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How to cite

APA:

Alshraa, A., Fellerer, J., Hielscher, K.-S., & German, R. (2025). Comparative Analysis of Smart Grid Routing Using Mixed-Integer SOCP and Network Calculus. In Elhadi Shakshuki (Eds.), Procedia Computer Science (pp. 528-535). Leuven, BE: Elsevier B.V..

MLA:

Alshraa, Abdullah, et al. "Comparative Analysis of Smart Grid Routing Using Mixed-Integer SOCP and Network Calculus." Proceedings of the 20th International Conference on Future Networks and Communications, FNC 2025 / 22nd International Conference on Mobile Systems and Pervasive Computing, MobiSPC 2025 / 15th International Conference on Sustainable Energy Information Technology, SEIT 2025, Leuven Ed. Elhadi Shakshuki, Elsevier B.V., 2025. 528-535.

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