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Photovoltaic Power Harvesting Technologies in Biomedical Implantable Devices Considering the Optimal Location

机译:考虑最佳位置的生物医学植入设备中的光伏电力收获技术

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摘要

There are still many challenges in effectively harvesting and generating power for implantable medical devices. Most of today's research focuses on finding ways to harvest energy from the human body to avoid the use of batteries, which require surgical replacement. For example, current energy harvesters rely on piezoelectricity, thermoelectricity, and solar electricity to drive the implantable device. However, the majority of these energy harvesting techniques suffer from a variety of limitations such as low power output, large size, or poor efficiency. Due to their high efficiency, we focus our attention on solar photovoltaic cells. We demonstrate that the tissue absorption losses severely influence their performance. We predict the performance of these cells using simulation through the verified experimental data. Our results show that our model can obtain 17.20% efficiency and 0.675 V open-circuit voltage in one sun condition. In addition, our device can also harvest up to 15 mW/cm2 in dermis and 11.84 mW/cm2 in hypodermis by using 100 mW/cm2 light source at 800 nm and 850 nm, respectively. We propose implanting our device in hypodermis to obtain a stable power output.
机译:有效地收集和发电机的功率仍有许多挑战。今天的大部分研究侧重于寻找从人体收获能量的方法,以避免需要手术更换的电池。例如,当前的能量收割机依赖于压电,热电和太阳能电力来驱动可植入装置。然而,大多数这些能量收集技术遭受了各种限制,例如低功率输出,大尺寸或效率差。由于其高效率,我们将注意力集中在太阳能光伏电池上。我们表明组织吸收损失严重影响了它们的性能。我们通过经过验证的实验数据预测使用模拟的这些细胞的性能。我们的研究结果表明,我们的模型可以在一个太阳状态下获得17.20%的效率和0.675 V开路电压。此外,我们的设备还可以收获高达15 MW / cm 2 在真皮和11.84 mw / cm 2 通过使用100 mw / cm的皮下注射 2 光源分别为800nm和850nm。我们提出植入我们的皮肤病中的装置,以获得稳定的功率输出。

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