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Efficient Data Access in Mobile Cloud Computing: A Study on Data Access, Energy Efficiency, and Latency

Ibrahim Bashar, Musa Sule Argungu PhD Hassan U. Suru PhD

Abstract

This study explores the creation of an efficient data transfer mechanism for mobile devices utilizing the Mobile Cloud Computing paradigm. MCC merges mobile and cloud computing, allowing users to capitalize on cloud resources for processing, storage, and communication functions. A significant challenge in mobile device communication is the dependency on device proximity, which restricts data sharing. This study seeks to address these limitations by enhancing reliable data access, reducing latency, and lowering energy consumption during communication between mobile devices through cloud-based solutions. The research objectives involve investigating the connections between data localization, accessibility, and user experience, as well as how these aspects influence data access efficiency in MCC. Moreover, a predictive model is developed to dynamically balance the trade-off between data accessibility and locality, taking into account user demand, data access behaviors, and application needs. The study also analyzes the trade-offs between data replication and access efficiency, proposing a comprehensive strategy to ensure effective data access while managing replication costs. Additionally, the effectiveness of current data caching techniques is evaluated, with suggestions for enhancements to adapt to changing data access patterns in MCC settings. The research methodology consists of gathering primary data through questionnaires distributed both online and in print to participants in selected institutions in the North-Western region of Nigeria. The experimental results indicate considerable improvements, achieving a 47% enhancement in addressing critical issues related to data access, energy efficiency, and latency. By utilizing virtual machines in the cloud to facilitate data communication, this research presents an innovative approach for enabling reliable and efficient data sharing among mobile devices, independent of their physical proximity.

Keywords

Data Transfer MechanismLatency ReductionData SecurityImproving data access in mobile cloud computing environments.

References

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