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A Comprehensive Review on Rectifiers, Linear Regulators, and Switched-Mode Power Processing Techniques for Biomedical Sensors and Implants Utilizing in-Body Energy Harvesting and External Power Delivery

机译:用于生物医学传感器的整流器,线性稳压器和开关模式电源处理技术的全面审查和利用身体能量收集和外部电力输送的植入物

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摘要

This article reviews the state-of-the-art power conditioning techniques to process harvested energy from the human body and any external environmental sources surrounding the human body for powering biomedical implants and sensors. The fundamental focus of this article is to highlight the necessity of power conditioning circuits to energize implanted biomedical circuits. In addition, the underlying challenges in power conversion modules used in these low-power circuits have been discussed in detail. Power conditioning techniques for biomedical implants heavily rely on the type of sources and implants, thereby we aim to provide an elaborate discussion on the operating principle of individual technique through this review. Besides, we have also explored the suitability of each individual power processing technique inside the human body with great details. Finally, a comprehensive discussion on the limitations of existing power conditioning techniques has been presented, and the scopes to improve or mitigate those limitations have been discussed as well. The goal of this work is to present a complete guideline for future researchers to downselect a compatible power conditioning technique for a specific biomedical application.
机译:本文审查了最先进的电力调节技术,以处理来自人体的收获能量和人体周围的任何外部环境源,用于供电生物医学植入物和传感器。本文的基本焦点是突出电力调节电路的必要性来激励植入的生物医学电路。另外,已经详细讨论了这些低功率电路中使用的功率转换模块中的基本挑战。生物医学植入物的功率调节技术严重依赖于来源和植入物的类型,从而旨在通过本综述提供关于个体技术的操作原理的精心讨论。此外,我们还探讨了每个单独的电力加工技术的适用性,具有卓越的细节。最后,提出了关于现有电力调节技术的局限性的全面讨论,并且还讨论了改进或减轻这些限制的范围。这项工作的目标是为将来的研究人员提供完整的指导,为特定的生物医学应用程序进行兼容的电力调节技术。

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