Design and Implementation of a Cordless Power Supply System for Pervasive Medical Devices

Zhiqiang Que, Yongxin Zhu, Tingting Mo, Bin Chen, Zhijun Li
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Abstract

Pervasive medical devices are able to provide diagnostic information inside intangible in vivo organs. For better inspection, additional power besides cell batteries is required by doctors to enable locomotion and active control of devices such as capsule endoscope. We present the design and implementation of a cordless power supply system based on 900MHz RF signals. It consists of an antenna, an impedance matching network circuit, a rectifier circuit cum voltage multiplier, and a LDO (low drop out voltage regulator). After matching analytical results and simulation ones, we further implement the power supply system in a PCB and measure it with Agilent spectrum analyzer and Tektronix oscilloscope. It is also interesting that wireless signals from any 900M GSM mobile phone talking nearby can be absorbed and converted into enough power by the system. It is believed to enable the external control and the locomotion of active endoscopes as well as other power hunger pervasive medical devices.
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普适医疗设备无线供电系统的设计与实现
无处不在的医疗设备能够提供体内无形器官的诊断信息。为了更好地进行检查,医生还需要电池以外的额外动力来实现胶囊内窥镜等设备的运动和主动控制。提出了一种基于900MHz射频信号的无线供电系统的设计与实现。它由天线、阻抗匹配网络电路、整流电路兼电压乘法器和LDO(低差电压调节器)组成。在将分析结果与仿真结果进行匹配后,我们进一步在PCB上实现了电源系统,并使用安捷伦频谱分析仪和泰克示波器对其进行了测量。另外有趣的是,从附近通话的任何900M GSM移动电话发出的无线信号都可以被系统吸收并转换成足够的能量。它被认为是实现外部控制和运动的主动内窥镜以及其他电力饥饿普遍存在的医疗设备。
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