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Battery and Data Drain of Over-The-Top Applications on Low-end Smartphones

机译:低端智能手机上最热门应用程序的电池和数据消耗

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Low-end smartphones with sub $50 price tags provide affordable device ownership to low-income populations. However, their limited capacity, when combined with the need for multimodal connectivity, raises usage concerns in rural off-grid regions. Some off-grid regions in sub-Saharan Africa provide recharge facilities using solar power and charge money for the service. Adding data bundle costs to frequent recharge costs, affordability of low-end smartphones becomes questionable in such areas. Community-controlled solar-powered wireless mesh network models with Session Initiation Protocol capability could alleviate the network usage cost conundrum and consume less power in low-end smartphones with the usage of WiFi. This paper reports on investigations that reveal usage of WiFi consumes less battery than 3G, 2G and Bluetooth. In addition, we feel that lowering recharge costs also requires battery consumption knowledge of the over-the-top applications. Using automated voice calls, this paper reports on battery and data consumption by multiple popular social media applications using one type of low-end smartphone. Data consumption was calculated with the objective of learning how to lower data bundle costs by selecting the application with least data consumption. Battery consumption due to CPU usage by the applications was also measured. Results show that WhatsApp consumes the least battery amongst instant messengers and also the least data over all apps measured. SipDroid consumes the least battery overall. Additionally, the reported experiments provide a framework for future experiments aimed at evaluating battery and data consumption by other smartphone applications.
机译:价格低于50美元的低端智能手机为低收入人群提供了负担得起的设备所有权。然而,它们的容量有限,加上对多式联运的需求,引起了农村离网地区使用的担忧。撒哈拉以南非洲的一些离网地区使用太阳能提供充电设施,并为此服务收费。将数据包成本增加到频繁的充电成本中,低端智能手机的可负担性在这些领域变得令人怀疑。具有会话发起协议功能的社区控制的太阳能无线网状网络模型可以缓解网络使用成本的难题,并在使用WiFi的低端智能手机中消耗更少的电量。本文报告了一些调查,这些调查显示WiFi的使用比3G,2G和蓝牙消耗的电池少。另外,我们认为降低充电成本还需要了解电池的超负荷应用。本文使用自动语音通话,报告了使用一种类型的低端智能手机的多个流行社交媒体应用程序的电池和数据消耗情况。计算数据消耗的目的是学习如何通过选择数据消耗最少的应用程序来降低数据包成本。还测量了由于应用程序使用CPU而导致的电池消耗。结果表明,在即时通讯工具中,WhatsApp消耗的电池最少,并且在所有测得的应用程序中,数据消耗最少。 SipDroid消耗的电池最少。此外,报告的实验为将来的实验提供了一个框架,旨在评估其他智能手机应用程序的电池和数据消耗。

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