论文标题
R-Drive:移动边缘计算系统的弹性数据存储和共享
R-Drive: Resilient Data Storage and Sharing for Mobile Edge Computing Systems
论文作者
论文摘要
移动边缘计算(MEC)系统(由于没有通信基础架构无法连接到云的通信基础架构,在本地执行了密集的计算和数据存储任务),目前正在用于灾难响应应用程序和战术环境。这些方案的MEC应用程序生成和处理需要弹性,安全存储和共享的重要任务和个人数据。在本文中,我们介绍了R-Drive的设计,实施和评估,R-Drive是灾难响应和战术MEC应用程序的弹性数据存储和共享框架。 R-Drive采用了擦除编码和数据加密,可确保弹性和安全的数据存储,以防止设备故障。 R-Drive自适应地选择了擦除编码参数,以确保最高数据可用性,而存储成本最少。 R-Drive的分布式目录服务为具有严格访问控制管理的文件提供了一个弹性且安全的名称空间。 R-Drive利用机会性网络,可以在移动和松散连接的边缘计算环境中进行数据存储和共享。我们在Android上实施了R-Drive,并将其与现有的MEC应用程序集成在一起。绩效评估结果表明,R-Drive可以启用弹性和安全的数据存储和共享。
Mobile edge computing (MEC) systems (in which intensive computation and data storage tasks are performed locally, due to the absence of communication infrastructure for connectivity to the cloud) are currently being developed for disaster response applications and for tactical environments. MEC applications for these scenarios generate and process significant mission-critical and personal data that require resilient and secure storage and sharing. In this paper, we present the design, implementation, and evaluation of R-Drive, a resilient data storage and sharing framework for disaster response and tactical MEC applications. R-Drive employs erasure coding and data encryption, ensuring resilient and secure data storage against device failure. R-Drive adaptively chooses erasure coding parameters to ensure the highest data availability with a minimal storage cost. R-Drive's distributed directory service provides a resilient and secure namespace for files with rigorous access control management. R-Drive leverages opportunistic networking, allowing data storage and sharing in mobile and loosely connected edge computing environments. We implemented R-Drive on Android, and integrated it with existing MEC applications. Performance evaluation results show that R-Drive enables resilient and secure data storage and sharing.