具有QoS约束的移动云上位置感知代码卸载

S. Tasnim, M. Chowdhury, Kishwar Ahmed, N. Pissinou, S. S. Iyengar
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引用次数: 3

摘要

移动应用程序可以在很大程度上通过以节能的方式使用卸载机制来增强资源丰富的云。由于智能手机的巨大需求,为这种资源受限的设备提供更多处理能力的问题越来越受到人们的关注。在本文中,提出了一种方法级卸载机制,其中不需要将移动设备的先前图像传输到云端。应用程序在不同的点上进行分区,执行线程从移动设备迁移到附近的资源云,以获得最佳的执行性能和最佳的能源成本。移动设备可以在分区线程从云返回到设备后完成执行。这种机制以更快的移动设备执行速度的形式增加了可伸缩性和性能。此外,我们考虑了移动设备的移动性,并提出了一个在移动中寻找最佳云实例的解决方案。为了确定要卸载哪个云,需要考虑各个云上的通信延迟、容量和当前负载,以确定要卸载的最佳云,以确保为移动设备提供更好的服务。所提出的解决方案已经在两个不同的模拟场景中与CloneCloud进行了模拟和比较,我们表明我们的方法性能优于CloneCloud。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Location aware code offloading on mobile cloud with QoS constraint
Mobile applications can be enhanced to a great extent by using the offloading mechanism in an energy efficient manner to the bounty resourceful clouds. Due to the huge demand of smart phones, the issue of providing more processing capability to this resource constraint device is getting more concern now-a-days. In this paper, a method level offloading mechanism has been proposed where no prior image of the mobile device is needed to be transferred to the cloud. The application is partitioned at different points where the migration of the execution thread is performed from mobile device to nearby resourceful cloud to get the best execution performance in optimal energy cost. The mobile can complete the execution after the partitioned thread returns back from the cloud to the device. This mechanism increases scalability as well as performance in the form of faster execution speed of the mobile devices. Moreover, we consider the mobility of the mobile device and propose a solution to find the best cloud instance on the move. To find out which cloud to offload, the communication latency, capacity, and current load at individual clouds are considered to find out the best cloud to offload to ensure better service for the mobile device. The proposed solution has been simulated and compared against CloneCloud in two different simulation scenarios where we show that our method performs superior to CloneCloud.
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