Computational ferrying: Challenges in deploying a Mobile High Performance Computer

A. K. Monfared, M. Ammar, E. Zegura, David Doria, David Bruno
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引用次数: 10

Abstract

Mobile devices are often expected to perform computational tasks that may be beyond their processing or battery capability. Cloud computing techniques have been proposed as a means to offload a mobile device's computation to more powerful resources. In this paper, we consider the case where powerful computing resources are employed on a vehicle, thus they can be re-positioned in real time. User-carried devices with no Internet connectivity wish to initiate computing tasks to be run on a remote computer. This scenario finds application in challenged environments and may be used in a military or disaster relief setting. It is further enabled by increasing feasibility of constructing a Mobile High Performance Computer (MHPC) using rugged computer hardware with form factors that can be deployed in vehicles. By analogy to prior work on message ferries and data mules, one can refer to the use of MHPCs as computational ferrying. After illustrating and motivating the computational ferrying concept, we turn our attention into the challenges facing such a deployment. These include the well-known challenges of operating an opportunistic and intermittently connected network using message ferries - such as devising an efficient mobility plan for MHPCs and developing techniques for proximity awareness. In addition such a system must include computation offloading decision making mechanisms to be deployed by mobile users, techniques for scheduling computation on MHPCs, and for handling possible mobility of the users. In this paper, first we propose an architecture for the system components to be deployed on the mobile users and the MHPCs. We then provide solutions to the MHPC movement scheduling problem with sufficient generality to describe a number of plausible deployment scenarios. Finally, we report and discuss some preliminary results.
计算传递:部署移动高性能计算机的挑战
移动设备通常被期望执行可能超出其处理能力或电池能力的计算任务。云计算技术已经被提出作为一种手段来卸载移动设备的计算到更强大的资源。在本文中,我们考虑在车辆上使用强大的计算资源,从而可以实时重新定位。没有互联网连接的用户携带设备希望启动在远程计算机上运行的计算任务。此场景适用于具有挑战性的环境,并可用于军事或救灾环境。通过使用可部署在车辆中的坚固计算机硬件构建移动高性能计算机(MHPC)的可行性,进一步实现了这一目标。通过类比先前关于消息传送和数据传送的工作,可以将mhpc的使用称为计算传送。在说明和激励计算摆渡概念之后,我们将注意力转向这种部署所面临的挑战。这些挑战包括众所周知的利用信息轮渡操作机会性和间歇性连接网络的挑战——例如为mhpc设计有效的移动计划和开发接近感知技术。此外,这样的系统必须包括由移动用户部署的计算卸载决策机制,调度mhpc计算的技术,以及处理用户可能的移动性。本文首先提出了系统组件在移动用户和mhpc上部署的体系结构。然后,我们提供了MHPC移动调度问题的解决方案,这些解决方案具有足够的通用性,可以描述许多合理的部署场景。最后,我们报告并讨论了一些初步结果。
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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