Jade:面向 ad-hoc 网络移动设备的异构网络接口结合型高效能源感知计算卸载系统

Hao Qian, Daniel Andresen
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引用次数: 32

摘要

移动设备用户一直希望获得更快的结果和更长的电池续航时间,这通常是通过将计算加载到云端服务器来实现的。然而,在常见情况下(互联网连接缓慢/不可用、隐私/安全问题),用户拥有独立于云端的多台设备,其电池和计算能力各不相同。安卓系统提供了创建移动代码的机制,但缺乏确定代码执行位置的本地调度机制。在本文中,我们介绍了为安卓应用程序添加复杂调度功能的研究成果,该调度功能可在联网移动设备之间平衡能量和性能。Jade 监控并适应由 Android 移动设备组成的分布式 ad-hoc 网络中的工作量变化、通信成本和能源状况,以支持分布式计算。我们展示了如何将这两个目标整合在一起,并介绍了几种算法,这些算法表明,通过使用远程计算设备的动态调度信息,可以实现重大优势(能源利用率提高 75% 以上)。我们对系统架构和实施进行了详细讨论,并简要总结了已取得的实验结果。
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Jade: An efficient energy-aware computation offloading system with heterogeneous network interface bonding for ad-hoc networked mobile devices
Mobile device users consistently desire faster results and longer battery life, which is frequently accomplished by of-floading computation to cloud-based servers. However, in common cases (Internet connectivity slow/unavailable, priva-cy/security issues), users have multiple devices with heterogeneous battery and computational capabilities independent of the cloud. Android provides mechanisms for creating mobile code, but lacks a native scheduling mechanism for determining where code should be executed. In this paper we present the results of an investigation into adding sophisticated scheduling capabilities to Android apps, which provides scheduling balancing energy and performance across networked mobile devices. Jade monitors and adapts to workload variation, communication costs, and energy status in a distributed ad-hoc network of Android mobile devices for supporting distributed computation. We show how the two goals can be integrated, and present several algorithms indicating a major advantage (over 75% improvement in energy use) can be achieved through the use of dynamic scheduling information for remote computational devices. We provide a detailed discussion of our system architecture and implementation, and briefly summarize the experimental results which have been achieved.
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