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Design and Analysis of an Antenna for Wireless Energy Harvesting in a Head-mountable DBS Device

机译:用于可头枕DBS设备的无线能量收割天线的设计与分析

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This paper presents design and simulation of a circular meander dipole antenna at the industrial, scientific, and medical band of 915 MHz for energy scavenging in a passive head-mountable deep brain stimulation device. The interaction of the proposed antenna with a rat body is modeled and discussed. In the antenna, the radiating layer is meandered, and a FR-4 substrate is used to limit the radius and height of the antenna to 14 mm and 1.60 mm, respectively. The resonance frequency of the designed antenna is 915 MHz and the bandwidth of 15 MHz at a return loss of -10 dB in free space. To model the interaction of the antenna with a rat body, two aspects including functional and biological are considered. The functional aspect includes input impedance, resonance frequency, gain pattern, radiation efficiency of the antenna, and the biological aspect involves electric field distribution, and SAR value. A complete rat model is used in the finite difference time domain based EM simulation software XFdtd. The simulated results demonstrate that the specific absorption rate distributions occur within the skull in the rat model, and their values are higher than the standard regulated values for the antenna receiving power of 1W.
机译:本文介绍了915 MHz的工业,科学和医用频段的圆形蜿蜒偶极天线的设计和仿真,以便在被动可头部的深脑刺激装置中扫除能量清除。建模和讨论所提出的天线与RAT主体的相互作用。在天线中,辐射层蜿蜒,并且FR-4基板用于将天线的半径和高度限制为14mm和1.60mm。设计天线的共振频率为915 MHz,在自由空间中的回报损耗为15 MHz的带宽。为了模拟天线与RAT体的相互作用,考虑包括功能和生物学的两个方面。功能方面包括输入阻抗,谐振频率,增益模式,天线的辐射效率,并且生物学方面涉及电场分布和SAR值。完整的大鼠模型用于基于有限差分时间域的EM仿真软件XFDTD。模拟结果表明,在大鼠模型中的颅骨内发生特定吸收率分布,它们的值高于1W的天线接收功率的标准调节值。

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