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迈向用于胶囊内镜检查的小型化三维接收端无线电能传输系统。

Towards a Miniaturized 3D Receiver WPT System for Capsule Endoscopy.

作者信息

Khan Sadeque Reza, Desmulliez Marc P Y

机构信息

Institute of Sensors, Signals and Systems, School of Engineering and Physical Sciences, Heriot-Watt University, Edinburgh EH14 4AS, Scotland, UK.

出版信息

Micromachines (Basel). 2019 Aug 17;10(8):545. doi: 10.3390/mi10080545.

Abstract

The optimization, manufacturing, and performance characterization of a miniaturized 3D receiver (RX)-based wireless power transfer (WPT) system fed by a multi-transmitter (multi-TX) array is presented in this study for applications in capsule endoscopy (CE). The 200 mm outer diameter, 35 μm thick printed spiral TX coils of 2.8 g weight, is manufactured on a flexible substrate to enable bendability and portability of the transmitters by the patients. The 8.9 mm diameter-4.8 mm long, miniaturized 3D RX-includes a 4 mm diameter ferrite road to increase power transfer efficiency (PTE) and is dimensionally compatible for insertion into current endoscopic capsules. The multi-TX is activated using a custom-made high-efficiency dual class-E power amplifier operated in subnominal condition. A resulting link and system PTE of 1% and 0.7%, respectively, inside a phantom tissue is demonstrated for the proposed 3D WPT system. The specific absorption rate (SAR) is simulated using the HFSS software (15.0) at 0.66 W/kg at 1 MHz operation frequency, which is below the IEEE guidelines for tissue safety. The maximum variation in temperature was also measured as 1.9 °C for the typical duration of the capsule's travel in the gastrointestinal tract to demonstrate the patients' tissues safety.

摘要

本研究介绍了一种基于小型化三维接收器(RX)的无线电能传输(WPT)系统的优化、制造及性能表征,该系统由多发射器(multi-TX)阵列供电,用于胶囊内窥镜检查(CE)。外径200毫米、厚度35微米、重量2.8克的印刷螺旋TX线圈在柔性基板上制造,以使发射器具备可弯曲性和便携性,便于患者使用。直径8.9毫米、长4.8毫米的小型化三维RX包括一条直径4毫米的铁氧体路径,以提高功率传输效率(PTE),并且在尺寸上与当前的内窥镜胶囊兼容,便于插入。多TX通过在亚标称条件下运行的定制高效双E类功率放大器激活。对于所提出的三维WPT系统,在模拟组织内部展示了链路和系统的功率传输效率分别为1%和0.7%。使用HFSS软件(15.0)在1兆赫工作频率下模拟比吸收率(SAR)为0.66瓦/千克,低于组织安全的IEEE指南。在胶囊在胃肠道中典型的行进时间内,还测量到温度的最大变化为1.9摄氏度,以证明对患者组织的安全性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec00/6724057/bb40edfae9c0/micromachines-10-00545-g001.jpg

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