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Battery Independence: Reducing the Dependence on Batteries in Wearable Computing Through Energy Harvesting Techniques

机译:电池独立性:通过能量收集技术降低可穿戴计算中的电池的依赖

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This paper discusses one of the most troublesome and frustrating issues for mobile devices users, battery life. Once a battery is utilized in a system, battery charging must be incorporated seamlessly so that the workflow of the user is uninterrupted. In today's fast-paced society, people don't have the time to stop what they are doing to charge their mobile devices and wait for them to complete. A secondary known issue concerning batteries is that their effective capacity diminishes over time and use. In turn the process of battery charging would become more frequent and disruptive to the user. The need for an effective means to continually charge the battery through smart energy harvesting techniques will be investigated in the following paper. Utilizing the findings from other articles, we were able to generate easy-to-use formulas to help estimate the power across multiple real-world use cases (running, walking, sleeping, sun, shade, etc.) Testing the formulas across multiple use cases, only two of the cases generated more power in our application than what the system utilized. This excess power would be utilized to keep the battery's charge topped off. In the use cases where we didn't generate enough power, the battery would need to supplement the system.
机译:本文讨论了移动设备用户,电池寿命最麻烦和令人沮丧的问题之一。一旦电池在系统中使用,必须无缝地整合电池充电,以便用户的工作流程不间断。在今天的快节奏社会中,人们没有时间停止他们正在做的事情来为他们的移动设备充电并等待他们完成。关于电池的辅助问题是它们的有效容量随着时间的推移和使用而减少。反过来,电池充电过程将对用户变得更频繁和破坏。需要通过智能能量收集技术不断充电的有效手段,以便在下文中进行研究。利用其他文章的调查结果,我们能够生成易于使用的公式,以帮助估计跨多个真实用例(跑步,走路,睡觉,太阳,阴影等)测试跨多种使用的公式案例,只有两个案例在我们的应用中产生了更多的电力而不是所使用的系统。将使用过多的电源来保持电池的电量旋转。在我们没有产生足够电量的用例中,电池需要补充系统。

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