SELF-SUSTAINED POWER FOR MOBILE DEVICES: A STEPPER MOTOR-DRIVEN SOLUTION

Jerry I. Teleron, Jeffrey T. Leonen, Christian Louis M. Galang
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Abstract

This study introduces a self-sustained power solution for mobile devices using a stepper motor-driven mechanism. The objective is to ensure reliable power supply during critical situations when traditional sources are unavailable. A prototype device was designed and experimentally evaluated.The device utilizes a stepper motor as a generator, converting mechanical energy into electrical energy through a hand crank. A full bridge rectifier transforms the generated alternating current into direct current compatible with mobile devices. A battery serves as the primary power storage, enabling energy accumulation.Experimental testing verified the device's performance. Mobile devices, including cellphones, laptops, and routers, were connected to assess charging capabilities. The results demonstrated successful charging, providing dependable power during outages and inaccessible charging methods.The findings establish the stepper motor-driven self-sustained power device as a practical emergency power solution. It empowers individuals to maintain communication channels and power mobile devices during critical situations, enhancing resilience. Its versatility and portability ensure effectiveness in diverse locations where conventional power sources are unreliable.In conclusion, this study presents a novel self-sustained power solution employing a stepper motor-driven mechanism. Experimental results confirm its capability to charge mobile devices, supporting communication and resilience during emergencies. The device has significant potential to benefit individuals and communities, providing reliable power and improving emergency response and communication capabilities.
移动设备的自持电源:步进电机驱动的解决方案
本研究介绍了一种使用步进电机驱动机构的移动设备自维持电源解决方案。目标是确保在传统电源不可用的危急情况下可靠的电力供应。设计了一个原型装置并进行了实验评估。该装置利用步进电机作为发电机,通过手曲柄将机械能转化为电能。全桥整流器将产生的交流电转换成与移动设备兼容的直流电。蓄电池作为主储能,实现能量的积累。实验测试验证了该装置的性能。包括手机、笔记本电脑和路由器在内的移动设备都被连接起来,以评估充电能力。结果证明了成功的充电,在停电时提供可靠的电力和不可访问的充电方法。研究结果表明,步进电机驱动的自持电源装置是一种实用的应急电源解决方案。它使个人能够在危急情况下保持通信渠道并为移动设备供电,从而增强复原力。它的多功能性和便携性确保了在传统电源不可靠的不同地点的有效性。总之,本研究提出了一种采用步进电机驱动机构的新型自维持电源解决方案。实验结果证实了其为移动设备充电的能力,支持紧急情况下的通信和恢复能力。该装置具有极大的潜力使个人和社区受益,提供可靠的电力并改善应急反应和通信能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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