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Development of strain energy harvester as an alternative power source for the wearable biomedical diagnostic system

机译:开发应变能采集器作为可穿戴生物医学诊断系统的替代电源

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摘要

The human body is considered as a rich source of energy in the forms of body motion, heat etc. These energies can be trapped to develop a viable energy source, which confines the long-term serviceability. The battery drove wearable systems suffer from critical issues such as weight, limited lifespan and lack of biocompatibility. It is the main hurdle in gaining market acceptance for wearables. Rapid growths of wearable for biosensing motivate them to use it for health monitoring. This work describes the complete fabrication flow for low-cost energy harvesting device as an alternative power source for wearable biomedical diagnostic system with prime focus on biocompatibility, deformability and conformability. The conversion of body motional energy into electrical energy is carried out using zinc oxide piezoelectric material, polydimethylsiloxane substrate and silver fabric electrodes. The estimated power demand of the biomedical sensing modules lies in the range of 1-100 mu W. It is observed that optimum power can be harvested when the device is placed between socks fabric and foot sole. The power level of 106 mu Wpeak or 22 mu Wrms has been recorded which reveals the feasibility as an alternative power source.
机译:人体被认为是人体运动,热等形式的丰富能源。这些能量可以被捕集以开发可行的能源,从而限制了其长期使用性。电池驱动的可穿戴系统遭受严重问题的困扰,例如重量,寿命有限和缺乏生物相容性。这是获得可穿戴设备市场认可的主要障碍。用于生物传感的可穿戴设备的快速增长促使他们将其用于健康监测。这项工作描述了低成本能量收集设备的完整制造流程,该设备是可穿戴生物医学诊断系统的替代电源,主要关注生物相容性,可变形性和顺应性。使用氧化锌压电材料,聚二甲基硅氧烷基底和银织物电极将身体运动能转换为电能。生物医学传感模块的估计功率需求在1至100μW的范围内。据观察,将设备放置在袜子织物和脚底之间可以收获最佳功率。记录到的功率水平为106μW峰值或22μWrms,这显示了作为替代电源的可行性。

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