Transformative Storage Framework for 6G Smart City Deployments

N Maheswaran, Sanjay Kumar Bose, Shruthi T V, G Logeswari, T Anitha, Darshan Prabhu · 2024

The advent of 6G networks is poised to revolutionize the digital landscape by offering unprecedented data transfer speeds, ultra-low latency, and enhanced connectivity capabilities. This paradigm shift necessitates the development of robust and efficient storage solutions to handle the massive influx of data generated by ubiquitous IoT devices, immersive applications, and intelligent systems. In this context, we propose a multilevel storage Algorithm (LRU + OPTIMAL) designed specifically for the 6G networking environment in smart cities. Our algorithm synergizes the Last Recently Used (LRU) and Optimal algorithms to dynamically manage storage resources, thereby ensuring optimal data retrieval and minimizing latency. The deployment of 6G networks introduces complex data storage challenges, driven by the exponential growth of data traffic and the real-time processing is required. By integrating LRU and Optimal algorithms, our multi-level storage framework can effectively prioritize data caching and retrieval operations, thereby enhancing system efficiency and responsiveness. This approach leverages the predictive capabilities of the optimal algorithm to anticipate future data needs, while the LRU algorithm ensures that frequently accessed data remains readily available. Compared to 5G networks, 6G offers significantly higher bandwidth, reduced latency, and increased device density, all of which exacerbate storage demands. Our algorithm addresses these challenges by optimizing storage utilization and ensuring seamless data flow across distributed network nodes. The comparative analysis underscores the superiority of 6G in handling complex, data-intensive applications, thus necessitating advanced storage solutions such as our proposed algorithm. In the Multi-Level Storage Algorithm (LRU + OPTIMAL), a scalable and efficient framework for managing optimal storage space in 6G networks, ensuring that the storage infrastructure can keep pace with the rapid advancements in 6G technology, thereby supporting the seamless operation of next-generation digital services.

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