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Near Field Effects of Millimeter-Wave Power Transmission for Medical Applications

机译:毫米波功率传输在医疗领域的近场效应

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An integration of micro devices system and wireless power transmission (WPT) technology offers a great potential to revolutionize current health care devices. The system integration of wireless power transmission devices with smart microsensors is crucial for replacing a power storage devices and miniaturizing wireless biomedical systems. Our research goal is to replace battery power supply with an implantable millimeter-wave rectenna. Recently, a hat system with a small millimeter-wave antenna which can feed millimeter-wave power to thin-film rectenna array embedding Schottky diodes was introduced for neural sensing and stimulation applications [1]. In order to prove the design concept and investigate wireless power coupling efficiency under the system design, near-field wireless power transmission was studied in terms of wave frequency and distance. Also, in this paper, we will present the influence of biological objects to the wireless power transmission, simulating the experimental conditions of human objects for future medical applications.
机译:微型设备系统与无线电力传输(WPT)技术的集成提供了巨大的潜力,可以彻底改变当前的医疗保健设备。无线电力传输设备与智能微传感器的系统集成对于更换电力存储设备并使无线生物医学系统小型化至关重要。我们的研究目标是用植入式毫米波整流天线代替电池电源。最近,用于神经传感和刺激应用的帽子系统带有一个毫米波天线,可以将毫米波功率馈送至嵌入肖特基二极管的薄膜整流天线阵列[1]。为了证明设计理念并研究系统设计下的无线电力耦合效率,从波频率和距离的角度研究了近场无线电力传输。另外,在本文中,我们将介绍生物物体对无线电力传输的影响,模拟人体物体的实验条件,以用于未来的医学应用。

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