首页> 外文会议>International Conference on Ubiquitous Computing(UbiComp 2007); 20070916-19; Innsbruck(AT) >Users and Batteries: Interactions and Adaptive Energy Management in Mobile Systems
【24h】

Users and Batteries: Interactions and Adaptive Energy Management in Mobile Systems

机译:用户和电池:移动系统中的交互作用和自适应能量管理

获取原文
获取原文并翻译 | 示例

摘要

Battery lifetime has become one of the top usability concerns of mobile systems. While many endeavors have been devoted to improving battery lifetime, they have fallen short in understanding how users interact with batteries. In response, we have conducted a systematic user study on battery use and recharge behavior, an important aspect of user-battery interaction, on both laptop computers and mobile phones. Based on this study, we present three important findings: 1) most recharges happen when the battery has substantial energy left, 2) a considerable portion of the recharges are driven by context (location and time), and those driven by battery levels usually occur when the battery level is high, and 3) there is great variation among users and systems. These findings indicate that there is substantial opportunity to enhance existing energy management policies, which solely focus on extending battery lifetime and often lead to excess battery energy upon recharge, by adapting the aggressiveness of the policy to match the usage and recharge patterns of the device. We have designed, deployed, and evaluated a user- and statistics-driven energy management system, Llama, to exploit the battery energy in a user-adaptive and user-friendly fashion to better serve the user. We also conducted a user study after the deployment that shows Llama effectively harvests excess battery energy for a better user experience (brighter display) or higher quality of service (more application data) without a noticeable change in battery lifetime.
机译:电池寿命已成为移动系统最关注的可用性之一。尽管人们致力于提高电池寿命,但是在理解用户如何与电池交互方面仍存在不足。为此,我们对笔记本电脑和移动电话上的电池使用和充电行为(用户与电池交互的重要方面)进行了系统的用户研究。根据这项研究,我们提出了三个重要发现:1)大多数充电是在电池剩余能量时发生的; 2)相当一部分充电是由环境(位置和时间)驱动的,而通常由电池电量驱动的当电池电量高时; 3)用户和系统之间会有很大的差异。这些发现表明,通过调整策略的积极性以匹配设备的使用和充电方式,存在大量的机会来增强现有的能源管理策略,这些策略仅专注于延长电池寿命,并经常在充电时导致电池能量过多。我们已经设计,部署和评估了一个由用户和统计驱动的能源管理系统Llama,以便以用户自适应和用户友好的方式利用电池能量,从而更好地为用户服务。部署后,我们还进行了一项用户研究,结果显示Llama有效地收集了多余的电池能量,以提供更好的用户体验(更明亮的显示)或更高的服务质量(更多的应用程序数据),而电池寿命没有明显变化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号