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Wireless Power Supply for ICP Devices With Hybrid Supercapacitor and Battery Storage

机译:具有混合超级电容器和电池存储的ICP设备的无线电源

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摘要

Hydrocephalus patients use a shunt to drain excess fluid from the brain, however, these shunts fail regularly. The most valuable shunt diagnostic tool would be a pressure sensor implanted in the brain. This paper presents a wireless power transfer system being able to support the measurement of intracranial pressure (ICP) for a lifetime operation. A rechargeable battery is complemented by a new energy storage element—an electric double-layer capacitor to form a hybrid energy storage system, and a dynamic energy management algorithm is developed to control the power delivery. The charging circuitry for the hybrid system is founded on using the inductive power transfer technology, and the energy management scheme schedules the flow to power the ICP device automatically to meet both short-and long-term operation requirements. The voltage levels of the supercapacitor and rechargeable battery are continuously monitored, and the experimental results demonstrate that it takes only 3 seconds to charge up the supercapacitor for 1-minute operation of ICP for quick data collection, while longer durations of monitoring can be supported by the battery.
机译:脑积水患者使用分流器从大脑排出多余的液体,但是,这些分流器经常会失败。最有价值的并联诊断工具将是植入大脑的压力传感器。本文提出了一种无线功率传输系统,该系统能够支持终生手术中颅内压(ICP)的测量。可充电电池辅以新的储能元件-双电层电容器来形成混合储能系统,并开发了动态能量管理算法来控制功率传输。用于混合动力系统的充电电路是基于使用感应功率传输技术而建立的,并且能量管理方案可调度流量以自动为ICP设备供电,以满足短期和长期运行要求。连续监测超级电容器和可充电电池的电压水平,实验结果表明,只需花费3秒即可对ICP进行1分钟操作即可对超级电容器充电,从而可以快速收集数据,同时还可以支持更长的监测时间电池。

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