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Double permanent magnet vibration power generator for smart hip prosthesis

机译:用于智能髋关节假体的双永磁振动发电机

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摘要

Ever since the first studies about biomedical implantable devices, the problem of how to energize them has stood out as both important and notoriously difficult to solve. In order to extend the lifetime of implants, it is imperative to develop power generators that are autonomous, safe and maintenance-free. Energy harvesting is a natural way of meeting these requirements. First, the energy source is theoretically everlasting, a fact that helps to guarantee the autonomy. Second, the energy is obtained from the environment of the application itself, contributing to its safety. Finally, a properly designed energy harvesting system is very unlikely to ever require maintenance. This paper follows this line and describes an electromagnetic power transducer that harvests electrical energy from the human gait and stores it. An efficient power management module uses the stored energy to energize the telemetric system of a smart hip prosthesis implant, enabling the early detection of loosening, the target application of this work. The system is able to extract a total 1912.5 μJ of usable energy under normal walking conditions.
机译:自从对生物医学植入式设备进行首次研究以来,如何为它们提供能量的问题就已经突出,既解决又很困难。为了延长植入物的寿命,必须开发自主,安全且免维护的发电机。能量收集是满足这些要求的自然方法。首先,能源在理论上是持久的,这一事实有助于确保自治。其次,能量是从应用程序本身的环境中获取的,这有助于其安全性。最后,正确设计的能量收集系统极不可能需要维护。本文遵循这一思路,描述了一种电磁功率传感器,该电磁功率传感器从步态中收集电能并将其存储起来。高效的电源管理模块使用存储的能量为智能髋关节假体植入物的遥测系统供电,从而能够及早发现松动,这是这项工作的目标应用。该系统在正常的步行条件下能够提取总计1912.5μJ的可用能量。

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