Enhancing Scalability through Extended Hybrid Switching with Mixture Path Deployment (EHS-MPD): A Novel Framework

Vijesh K, Aparna Sachin
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Abstract

In today's digital landscape, the exponential growth of data has created significant challenges for archiving systems. Existing solutions often struggle to cope with the ever-increasing data volumes, leading to scalability limitations, reduced efficiency, and inflexibility. To address these challenges, this research paper introduces a novel approach that extends hybrid switching with a mixture path deployment framework. By combining the benefits of hybrid switching techniques and the adaptability of the mixture path deployment framework, our proposed approach aims to enhance scalability, efficiency, and flexibility in archiving systems while minimizing the risks of data loss and system failures. This paper provides a comprehensive analysis of the design, implementation, and evaluation of our approach, highlighting its key features, benefits, and potential impact on archiving systems. We review existing archiving approaches, identifying their limitations and shortcomings. Then, we delve into the concept of hybrid switching, exploring its advantages in optimizing network performance. Additionally, we introduce the mixture path deployment framework, emphasizing its benefits in load balancing, fault tolerance, and performance improvement. The proposed approach's architecture is presented, showcasing the integration of hybrid switching techniques and the mixture path deployment framework. Strategies for efficient data placement and management are discussed, including dynamic data placement algorithms and metadata management techniques. The design and implementation of the extended archiving system are described, outlining the interactions among its components. Overall, our novel approach to archiving high scalability through extending hybrid switching with a mixture path deployment framework offers a promising solution to address the limitations of existing archiving systems. It enables improved performance, flexibility, and fault tolerance, paving the way for efficient and scalable archiving solutions in the era of big data.
通过扩展混合交换和混合路径部署(EHS-MPD)增强可扩展性:一个新的框架
在当今的数字环境中,数据的指数级增长给归档系统带来了重大挑战。现有的解决方案常常难以应对不断增长的数据量,从而导致可伸缩性限制、效率降低和缺乏灵活性。为了解决这些挑战,本研究论文引入了一种新的方法,该方法通过混合路径部署框架扩展混合交换。通过结合混合交换技术的优点和混合路径部署框架的适应性,我们提出的方法旨在增强归档系统的可伸缩性、效率和灵活性,同时最大限度地降低数据丢失和系统故障的风险。本文提供了对我们的方法的设计、实现和评估的全面分析,突出了它的关键特性、好处和对归档系统的潜在影响。我们回顾了现有的存档方法,确定了它们的局限性和缺点。然后,我们深入研究混合交换的概念,探索其在优化网络性能方面的优势。此外,我们将介绍混合路径部署框架,强调其在负载平衡、容错和性能改进方面的好处。提出了该方法的体系结构,展示了混合交换技术和混合路径部署框架的集成。讨论了有效的数据放置和管理策略,包括动态数据放置算法和元数据管理技术。描述了扩展归档系统的设计和实现,概述了其组件之间的交互。总的来说,我们通过使用混合路径部署框架扩展混合交换来归档高可伸缩性的新方法为解决现有归档系统的局限性提供了一个有前途的解决方案。它提高了性能、灵活性和容错能力,为大数据时代高效、可扩展的归档解决方案铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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