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Energy Harvesting by Subcutaneous Solar Cells: A Long-Term Study on Achievable Energy Output

机译:皮下太阳能电池的能量收集:可实现的能量输出的长期研究

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摘要

Active electronic implants are powered by primary batteries, which induces the necessity of implant replacement after battery depletion. This causes repeated interventions in a patients’ life, which bears the risk of complications and is costly. By using energy harvesting devices to power the implant, device replacements may be avoided and the device size may be reduced dramatically. Recently, several groups presented prototypes of implants powered by subcutaneous solar cells. However, data about the expected real-life power output of subcutaneously implanted solar cells was lacking so far. In this study, we report the first real-life validation data of energy harvesting by subcutaneous solar cells. Portable light measurement devices that feature solar cells (cell area = 3.6 cm2) and continuously measure a subcutaneous solar cell’s output power were built. The measurement devices were worn by volunteers in their daily routine in summer, autumn and winter. In addition to the measured output power, influences such as season, weather and human activity were analyzed. The obtained mean power over the whole study period was 67 µW (=19 µW cm−2), which is sufficient to power e.g. a cardiac pacemaker.
机译:有源电子植入物由一次电池供电,这导致电池耗尽后需要更换植入物。这会导致对患者生活的反复干预,这会带来并发症的风险并且代价昂贵。通过使用能量收集装置为植入物供电,可以避免装置更换,并且可以大大减小装置尺寸。最近,几个小组提出了由皮下太阳能电池驱动的植入物的原型。但是,到目前为止,尚缺乏有关皮下植入的太阳能电池的预期实际功率输出的数据。在这项研究中,我们报告了皮下太阳能电池收集能量的第一个实际验证数据。内置了具有太阳能电池(电池面积= 3.6 cm 2 )并能够连续测量皮下太阳能电池输出功率的便携式光测量设备。志愿者在夏季,秋季和冬季的日常工作中都使用测量设备。除了测得的输出功率外,还分析了季节,天气和人类活动等影响。在整个研究期间获得的平均功率为67 µW(= 19 µW cm -2 ),足以为例如心脏起搏器。

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