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Ambient RF Energy Harvesting From a Two-Way Talk Radio for Flexible Wearable Wireless Sensor Devices Utilizing Inkjet Printing Technologies

机译:利用喷墨打印技术从双向通话无线电收集环境射频能量,用于柔性可穿戴无线传感器设备

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摘要

A complete design and additive fabrication process of flexible wearable radio-frequency (RF) energy harvesters for off-the-shelf 2 W two-way talk radios utilizing inkjet printing technology is discussed in this paper. As a result of numerous output dc power measurements of fabricated proof-of-concept prototypes, a maximum output power of 146.9 mW and 43.2 mW was achieved with an H-field and E-field harvester, respectively. Also, the effect of misalignment between receiver and hand-held radio on harvesting performance is discussed in detail. To verify their potential in real-world wearable autonomous RF modules, the operation of E- and H-field energy harvesters was verified by utilizing an LED and a microcontroller communication module under on-body and on-bottle conditions, and the effect of the energy harvesters on the performance of the harvested communication systems was inspected through received power measurements in an anechoic chamber.
机译:本文讨论了利用喷墨打印技术为现成的2 W两用双向对讲机设计的柔性可穿戴射频(RF)能量收集器的完整设计和增材制造过程。由于对制造的概念验证原型进行了多次输出直流功率测量,因此,使用H场和E场采集器可以分别实现146.9 mW和43.2 mW的最大输出功率。此外,还详细讨论了接收器和手持无线电设备之间未对准对收割性能的影响。为了验证其在现实世界中可穿戴的自主射频模块中的潜力,通过在体上和药瓶条件下利用LED和微控制器通信模块来验证E和H场能量采集器的运行情况,以及通过在消声室中接收的功率测量来检查能量收集器对收集的通信系统性能的影响。

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