论文标题
无线人群充电,电池老化缓解措施
Wireless Crowd Charging with Battery Aging Mitigation
论文作者
论文摘要
电池老化是普遍设备(例如智能手机,可穿戴设备和笔记本电脑)的主要关注点之一。当前的电池老化缓解方法仅部分利用可用的选项来延长电池寿命。在这方面,我们声称通过网络范围的智能充电协议充电的无线人群可以为应用电池老化的缓解提供有用的设置。在本文中,我们首次在最先进的情况下,在无线人群充电的背景下设计了两个概念,并设计了一个细颗粒的电池老化模型,以及两种范围内的网络范围的协议来减轻电池老化。我们的方法直接挑战了相关的当代研究范例,(i)考虑到与细粒度的电池老化特性有关的算法建模过程中的重要特征现象,(ii)部署无处不在的计算和无效的电池衰老缓解量的网络范围的协议,以及(III),(iii)符合使用者的期望,以享受效果的效果。基于仿真的结果表明,所提出的协议能够以近46.74-60.87%的速度迅速缓解电池老化,而在能源平衡质量方面,人群中电池容量的减小降低降低,部分优于最先进的协议。
Battery aging is one of the major concerns for the pervasive devices such as smartphones, wearables and laptops. Current battery aging mitigation approaches only partially leverage the available options to prolong battery lifetime. In this regard, we claim that wireless crowd charging via network-wide smart charging protocols can provide a useful setting for applying battery aging mitigation. In this paper, for the first time in the state-of-the-art, we couple the two concepts and we design a fine-grained battery aging model in the context of wireless crowd charging, and two network-wide protocols to mitigate battery aging. Our approach directly challenges the related contemporary research paradigms by (i) taking into account important characteristic phenomena in the algorithmic modeling process related to fine-grained battery aging properties, (ii) deploying ubiquitous computing and network-wide protocols for battery aging mitigation, and (iii) fulfilling the user QoE expectations with respect to the enjoyment of a longer battery lifetime. Simulation-based results indicate that the proposed protocols are able to mitigate battery aging quickly in terms of nearly 46.74-60.87% less reduction of battery capacity among the crowd, and partially outperform state-of-the-art protocols in terms of energy balance quality.