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SOD: Making Smartphone Smart on Demand with Radio Interface Management

机译:SOD:通过无线接口管理使智能手机随需应变

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A major concern for today's smartphones is their much faster battery drain than traditional feature phones, despite their greater battery capacities. The difference is mainly contributed by those more powerful but also much more power-consuming smartphone components, such as the multi-core application processor and the high-definition (HD) display. While the application processor must be active when any smart apps are being used, it is also unnecessarily waken up, even during idle periods, to perform operations related to basic phone functions (i.e., incoming calls and text messages). In addition, the power-hungry HD display is also used unnecessarily for such basic functions.In this article, we investigate how to increase the battery life of smartphones by minimizing the use of application processor and HD display for operations related to basic functions. We find that the application processor is often waken up by a process running on it, called the Radio Interface Layer Daemon (RILD), which interfaces the user and apps to the GSM/LTE cellular network. In particular, we demonstrate that a great amount of energy could be saved if RILD is stopped, such that the application processor can sleep more often. Based on this key finding, we design a Smart On Demand (SOD) configuration that reduces the smartphone energy consumption by running RILD operations on a secondary low-powermicrocontroller and by using a secondary low-power display to interface the user with basic functions. As a result, basic phone functions can be handled at much lower energy costs and the power-consuming components, i.e., application processor and HD display, are waken up only when one needs to use any smart apps, in an on-demand manner. We have built a hardware prototype of SOD and evaluated it with real user traces. Our results show that SOD can increase its battery life by up to 2.5 more days.
机译:当今智能手机的主要关注点是,尽管它们具有更大的电池容量,但其电池耗电却比传统功能手机快得多。这种差异主要是由功能更强大但功耗更高的智能手机组件造成的,例如多核应用处理器和高清(HD)显示器。尽管在使用任何智能应用程序时应用程序处理器必须处于活动状态,但即使在空闲期间,它也不必要地唤醒以执行与基本电话功能(即来电和短信)有关的操作。此外,此类基本功能也不需要使用耗电的高清显示器。在本文中,我们研究了如何通过最小化应用处理器和高清显示器用于基本功能相关操作来延长智能手机的电池寿命。我们发现应用处理器经常被运行在其上的进程(称为无线接口层守护进程(RILD))唤醒,该进程将用户和应用程序连接到GSM / LTE蜂窝网络。特别是,我们证明,如果停止RILD,则可以节省大量能量,从而使应用程序处理器可以更频繁地睡眠。基于这一关键发现,我们设计了智能按需(SOD)配置,该配置通过在次要低功耗微控制器上运行RILD操作并使用次要低功耗显示器将用户与基本功能进行接口来降低智能手机的能耗。结果,可以以低得多的能量成本来处理基本的电话功能,并且仅在需要以按需方式使用任何智能应用程序时才唤醒功耗组件,即应用处理器和高清显示器。我们已经构建了SOD的硬件原型,并通过真实的用户跟踪对其进行了评估。我们的结果表明,SOD可以将电池寿命增加多达2.5天。

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