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Energy scavenging sources for biomedical sensors

机译:生物医学传感器的能量清除源

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Energy scavenging has increasingly become an interesting option for powering electronic devices because of the almost infinite lifetime and the non-dependence on fuels for energy generation. Moreover, the rise of wireless technologies promises new applications in medical monitoring systems, but these still face limitations due to battery lifetime and size. A trade-off of these two factors has typically governed the size, useful life and capabilities of an autonomous system. Energy generation from sources such as motion, light and temperature gradients has been established as commercially viable alternatives to batteries for human-powered flashlights, solar calculators, radio receivers and thermal-powered wristwatches, among others. Research on energy harvesting from human activities has also addressed the feasibility of powering wearable or implantable systems. Biomedical sensors can take advantage of human-based activities as the energy source for energy scavengers. This review describes the state of the art of energy scavenging technologies for powering sensors and instrumentation of physiological variables. After a short description of the human power and the energy generation limits, the different transduction mechanisms, recent developments and challenges faced are reviewed and discussed.
机译:由于几乎无限的寿命以及不依赖于燃料来产生能量,因此能量清除已越来越成为为电子设备供电的有趣选择。此外,无线技术的兴起有望在医疗监控系统中获得新的应用,但是由于电池寿命和尺寸的限制,这些仍面临着局限性。这两个因素之间的权衡通常决定了自治系统的大小,使用寿命和功能。从运动,光和温度梯度等来源产生的能量已被确立为人类用手电筒,太阳能计算器,无线电接收器和热能手表等电池的商业可行替代品。从人类活动中收集能量的研究也解决了为可穿戴或可植入系统供电的可行性。生物医学传感器可以利用人类活动作为能量清除剂的能源。这篇综述描述了为传感器和生理变量仪器供电的能量清除技术的现状。在简要描述了人力和能量产生的限制之后,对不同的传导机制,近期的发展和面临的挑战进行了回顾和讨论。

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