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Cloud Computing: Integrated Perspectives on Security, Scalability, and Performance
Subject area: Science,Engineering and Technology · Area of research: Cloud Computing
DOI: https://doi.org/10.64388/IREV9I5-1712206
Abstract
Cloud computing has emerged as a fundamental enabler of today?s digital ecosystem, supporting automation, global interconnectivity, dynamic resource allocation, and intelligent service orchestration. As enterprises increasingly transition from traditional, hardware-centric systems to distributed and cloud-native environments, the interdependence among three critical architectural pillars?security, scalability, and performance?has gained significant strategic importance. This paper presents a comprehensive and original evaluation of how these pillars collectively shape modern cloud infrastructures. The study emphasizes that cloud platforms now function as integrated ecosystems rather than simple hosting environments. Within these ecosystems, components such as autonomous orchestration engines, zero-trust security models, multi-layer scalability frameworks, and distributed performance optimization mechanisms operate continuously and interactively. Additionally, emerging paradigms?such as edge computing, AI-driven orchestration, container-native deployments, and global data governance regulations?further transform architectural priorities and system behavior. The findings indicate that future cloud ecosystems will increasingly depend on self-governing, analytics-driven, policy-aware architectures capable of optimizing multiple system dimensions simultaneously with minimal human intervention.
Keywords
Cloud Computing, Distributed Architecture, Performance Optimization, Scalability, Security Frameworks
How to cite this paper
@article{1712206,
author = {Sakshi Dhanaji Suryawanshi, Vrushali Godse, Babasaheb Mohite, Rupali Nirmal, Athar Patel},
title = {Cloud Computing: Integrated Perspectives on Security, Scalability, and Performance},
journal = {Iconic Research And Engineering Journals},
year = {2025},
volume = {9},
number = {5},
pages = {1486-1495},
issn = {2456-8880},
url = {https://www.irejournals.com/formatedpaper/1712206.pdf},
abstract = {Cloud computing has emerged as a fundamental enabler of today?s digital ecosystem, supporting automation, global interconnectivity, dynamic resource allocation, and intelligent service orchestration. As enterprises increasingly transition from traditional, hardware-centric systems to distributed and cloud-native environments, the interdependence among three critical architectural pillars?security, scalability, and performance?has gained significant strategic importance. This paper presents a comprehensive and original evaluation of how these pillars collectively shape modern cloud infrastructures. The study emphasizes that cloud platforms now function as integrated ecosystems rather than simple hosting environments. Within these ecosystems, components such as autonomous orchestration engines, zero-trust security models, multi-layer scalability frameworks, and distributed performance optimization mechanisms operate continuously and interactively. Additionally, emerging paradigms?such as edge computing, AI-driven orchestration, container-native deployments, and global data governance regulations?further transform architectural priorities and system behavior. The findings indicate that future cloud ecosystems will increasingly depend on self-governing, analytics-driven, policy-aware architectures capable of optimizing multiple system dimensions simultaneously with minimal human intervention.},
keywords = {Cloud Computing, Distributed Architecture, Performance Optimization, Scalability, Security Frameworks},
month = {November},
doi = {https://doi.org/10.64388/IREV9I5-1712206}
}