促进自适应云卸载的实施,提高移动应用的能源效率

Young-Woo Kwon, E. Tilevich
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引用次数: 6

摘要

云卸载——利用远程基于云的计算资源来执行能源密集型功能——已经成为移动应用程序的常用优化技术。然而,实现云卸载技术仍然是一项微妙而复杂的任务,只有专业程序员才能完成。如果云计算要实现其作为一种普遍适用的、强大的移动应用优化技术的承诺,它的实现障碍必须降低。正如我们所发现的,通过方便的编程模型公开的可重用系统构建块可以促进复杂的云卸载优化的实现。本文描述了实现自适应云卸载优化的系统架构。特别是,该体系结构具有可参数化的构建块,用于监控和估计能耗和性能效率,以及跨地址空间的状态同步,移动程序员可以按需使用。这些模块简化了一系列自适应卸载优化的实现过程。将此系统架构应用于第三方移动应用程序,可以根据执行环境优化其能源效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Facilitating the Implementation of Adaptive Cloud Offloading to Improve the Energy Efficiency of Mobile Applications
Cloud offloading -- leveraging remote cloud-based computing resources to execute energy-intensive functionality -- has become a common optimization technique for mobile applications. However, implementing cloud offloading techniques remains a delicate and complex task, reserved for expert programmers. If cloud computing is to realize its promise as a generally applicable, powerful optimization technique for mobile applications, its implementation barrier must be lowered. As we have discovered, reusable system building blocks exposed via a convenient programming model can facilitate the implementation of complex cloud offloading optimizations. This paper describes a system architecture for implementing adaptive cloud offloading optimizations. In particular, the architecture features parameterizable building blocks for monitoring and estimating energy consumption and performance efficiency as well as state synchronization across address spaces, which the mobile programmer can use a la carte. These blocks streamline the implementation procedure for a wide array of adaptive offloading optimizations. Applying this system architecture to third-party mobile applications has optimized their energy efficiency, depending on the execution environment in place.
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