A Graph-Theoretical Framework for Identifying Critical Data Center Using Status Unequal Domination

Critical nodes are essential components of a graph network as they drive information flow and significantly influence the system’s ability and vulnerability. This work introduces status unequal domination ([Formula: see text]-domination), a new framework for identifying critical nodes based on status (a distance-based parameter). The concepts of the [Formula: see text]-dominating set and [Formula: see text]-domination number [Formula: see text] are established for several graph families, along with the bounds. To strengthen the theoretical foundation, several supporting notions related to [Formula: see text]-based influence are also developed. An algorithm is proposed for determining the minimum [Formula: see text]-dominating set in any connected graph and a modified version is formulated for the lexicographic product [Formula: see text]. The practical effectiveness of the framework is demonstrated through a data-center resilience model, where the method identifies the most crucial data centers for sustaining operation under disruptions. The proposed framework provides a systematic method for identifying critical nodes through Status Unequal Domination offering valuable insights for resilience assessment in complex networked systems.

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Journal
International Journal of Foundations of Computer Science
Published
2026-09-24
DOI
https://doi.org/10.1142/s0129054126500309
Primary Topic
Complex Network Analysis Techniques
Type
article
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A Graph-Theoretical Framework for Identifying Critical Data Center Using Status Unequal Domination

Swaminathan Venkatasubramanian, Marayanagaraj Shanmugapriya, R. Sundareswaran, Parvathy Gnana Sambandam
International Journal of Foundations of Computer Science
Complex Network Analysis Techniques
article

A Graph-Theoretical Framework for Identifying Critical Data Center Using Status Unequal Domination

Swaminathan Venkatasubramanian, Marayanagaraj Shanmugapriya, R. Sundareswaran, Parvathy Gnana Sambandam
article en

Abstract

Critical nodes are essential components of a graph network as they drive information flow and significantly influence the system’s ability and vulnerability. This work introduces status unequal domination ([Formula: see text]-domination), a new framework for identifying critical nodes based on status (a distance-based parameter). The concepts of the [Formula: see text]-dominating set and [Formula: see text]-domination number [Formula: see text] are established for several graph families, along with the bounds. To strengthen the theoretical foundation, several supporting notions related to [Formula: see text]-based influence are also developed. An algorithm is proposed for determining the minimum [Formula: see text]-dominating set in any connected graph and a modified version is formulated for the lexicographic product [Formula: see text]. The practical effectiveness of the framework is demonstrated through a data-center resilience model, where the method identifies the most crucial data centers for sustaining operation under disruptions. The proposed framework provides a systematic method for identifying critical nodes through Status Unequal Domination offering valuable insights for resilience assessment in complex networked systems.

International Journal of Foundations of Computer Science
Vel Tech Rangarajan Dr. Sagunthala R&D Institute of Science and Technology (IN), Sri Sivasubramaniya Nadar College of Engineering (IN)
Openalex Percentile: Top 11%
Complex Network Analysis Techniques
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A Graph-Theoretical Framework for Identifying Critical Data Center Using Status Unequal Domination — Swaminathan Venkatasubramanian, Marayanagaraj Shanmugapriya, et al. · International Journal of Foundations of Computer Science (2026) | TGRS Research Map | TGRS