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首页> 外文期刊>Microelectronics journal >Single frequency wireless power transfer and full-duplex communication system for intracranial epilepsy monitoring
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Single frequency wireless power transfer and full-duplex communication system for intracranial epilepsy monitoring

机译:用于颅内癫痫监测的单频无线电力传输和全双工通信系统

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摘要

Current clinical neural recording methods which employ wired connections to the external world can be improved by eliminating the wires thanks to integrated circuit and microsystems technology. This study presents design and implementation of such a system which performs wireless power transfer and data transmission for intracranial epilepsy monitoring. Proposed system provides power to the implant by inductive coupling. Full-duplex communication is also performed at the same frequency as the power transfer. Consequently, a system which can transfer power from 10 mm distance with 30% efficiency has been realized. The system supports 400 kbps uplink communication while downlink communication is performed with 1 kbps at the same time. Design challenges for uplink communication in terms of energy-per-bit and interaction between uplink and downlink communication have been discussed in detail to give an insight about the design trade-offs for a full-duplex communication system superposed on a wireless power transfer link.
机译:借助集成电路和微系统技术,可以通过消除导线来改善当前采用有线连接到外部世界的临床神经记录方法。这项研究提出了这种系统的设计和实现,该系统执行无线功率传输和数据传输以监测颅内癫痫。拟议的系统通过感应耦合为植入物供电。全双工通信也以与功率传输相同的频率执行。因此,已经实现了能够以30%的效率从10毫米距离传输功率的系统。该系统支持400 kbps上行通信,而下行通信同时以1 kbps进行。已经详细讨论了上行链路通信在每位能量以及上行链路和下行链路通信之间的交互方面的设计挑战,以提供有关叠加在无线电力传输链路上的全双工通信系统的设计折衷的见解。

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