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Energy harvesting for the implantable biomedical devices: issues and challenges

机译:植入式生物医学设备的能量收集:问题与挑战

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The development of implanted devices is essential because of their direct effect on the lives and safety of humanity. This paper presents the current issues and challenges related to all methods used to harvest energy for implantable biomedical devices. The advantages, disadvantages, and future trends of each method are discussed. The concept of harvesting energy from environmental sources and human body motion for implantable devices has gained a new relevance. In this review, the harvesting kinetic, electromagnetic, thermal and infrared radiant energies are discussed. Current issues and challenges related to the typical applications of these methods for energy harvesting are illustrated. Suggestions and discussion of the progress of research on implantable devices are also provided. This review is expected to increase research efforts to develop the battery-less implantable devices with reduced over hole size, low power, high efficiency, high data rate, and improved reliability and feasibility. Based on current literature, we believe that the inductive coupling link is the suitable method to be used to power the battery-less devices. Therefore, in this study, the power efficiency of the inductive coupling method is validated by MATLAB based on suggested values. By further researching and improvements, in the future the implantable and portable medical devices are expected to be free of batteries.
机译:植入设备的开发至关重要,因为它们直接影响人类的生命和安全。本文介绍了与用于可植入生物医学设备的能量采集所有方法有关的当前问题和挑战。讨论了每种方法的优点,缺点和未来趋势。从环境源和人体运动中获取能量以用于植入式设备的概念已经有了新的意义。在这篇综述中,讨论了收获动能,电磁能,热能和红外辐射能。说明了与这些方法在能量收集中的典型应用有关的当前问题和挑战。还提供了对可植入设备研究进展的建议和讨论。预计这项审查将加大研究力度,以开发出无孔式植入式设备,该设备具有减小的通孔尺寸,低功耗,高效率,高数据速率以及更高的可靠性和可行性。根据目前的文献,我们认为电感耦合链路是用于为无电池设备供电的合适方法。因此,在这项研究中,基于建议值,MATLAB验证了电感耦合方法的功率效率。通过进一步的研究和改进,预计将来可植入和便携式医疗设备将没有电池。

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