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A mobile energy harvesting autowinder - Build and test

机译:移动式能量收集自动收卷机-构建和测试

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摘要

Compared to mobile devices of the past decade, current devices provide desktop computer-level processing power in a palm-sized package. However, battery life of such devices has not made the same stride, forcing the user to rely on portable battery packs for backup power. Portable energy harvesting methods could provide a possible solution to reduce the user's dependence on the power grid. In this regard, a mobile energy harvester powered by human arm motion during walking or running activities is developed and tested. The device consists of a pendulum connected to a DC generator through a planetary gear train. An electronic module filters the output and supplies power to a load. A mathematical model of the human arm-harvester system is derived and simulated based on the triple pendulum system. The power output of the harvester for two output modes are recorded for a constant running pace by the user, and the results are compared with the simulation. The model predicted an energy output of 1.72 mJ and testing resulted in 1.39 mJ and 1.16 mJ for a period of 5 s of running activity. This successfully demonstrates the energy harvester's potential as a mobile power supply for charging portable consumer electronics. (C) 2019 Elsevier Ltd. All rights reserved.
机译:与过去十年的移动设备相比,当前的设备以掌上型包装提供台式计算机级的处理能力。但是,此类设备的电池寿命并没有大步向前,迫使用户不得不依靠便携式电池组来提供备用电源。便携式能量收集方法可以提供一种可能的解决方案,以减少用户对电网的依赖。在这方面,开发并测试了在步行或跑步活动期间由人类手臂运动提供动力的移动式能量采集器。该设备包括一个通过行星齿轮系连接到DC发电机的摆锤。电子模块对输出进行滤波并为负载供电。基于三重摆系统,推导并仿真了人体手臂收割系统的数学模型。用户以恒定的运行速度记录了收割机在两种输出模式下的功率输出,并将结果与​​仿真进行了比较。该模型预测的能量输出为1.72 mJ,测试结果为在进行5 s的跑步活动期间分别产生1.39 mJ和1.16 mJ。这成功展示了能量收集器作为移动电源为便携式消费类电子产品充电的潜力。 (C)2019 Elsevier Ltd.保留所有权利。

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