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首页> 外文期刊>International Journal of Biosensors & Bioelectronics >Wireless power transfer (WPT) using strongly coupled magnetic resonance (SCMR) at 5.8 GHz for biosensors applications: a feasibility study by electromagnetic (EM) simulations
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Wireless power transfer (WPT) using strongly coupled magnetic resonance (SCMR) at 5.8 GHz for biosensors applications: a feasibility study by electromagnetic (EM) simulations

机译:在生物传感器应用中使用5.8 GHz的强耦合磁共振(SCMR)进行无线功率传输(WPT):电磁(EM)模拟的可行性研究

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We report here a detailed 3-dimensional (3-D) electromagnetic (EM) simulation study on the feasibility of Wireless Power Transfer (WPT) using the strongly coupled magnetic resonance (SCMR) effect at 5.8 GHz for potential μm-scale biosensors applications. The tiny 110 μm x110 μm planar aluminum inductor coil is built on the silicon substrate as our miniaturized receiver coil, which has been designed and simulated by 3-D EM simulations and its EM data is consistent with the measured data from an advanced IBM/Global Foundries' 0.18 μm complimentary metal-oxide-semiconductor (CMOS) silicon-on-insulator (SOI) process technology. By using small relay coils for an optimized four-coil WPT system to reach the SCMR condition, EM simulations show that one can increase the wireless power transfer between the transmitter coil to the miniature receiver coil by about 300% to 400% over the traditional 2-coil inductive resonant system at the 5.8 GHz ISM band, making SCMR quite attractive for implantable bioelectronics and biosensors applications, such as on cochlear implants, capsule endoscopy and pacemakers. Our study features the smallest receiver coil (about 330 times smaller in area) than the previously reported smallest receiver coil used in inductive coupling for wireless power transfer.
机译:我们在这里报告详细的3维(3-D)电磁(EM)仿真研究,以研究无线功率传输(WPT)使用5.8 GHz的强耦合磁共振(SCMR)效应进行潜在μm规模生物传感器应用的可行性。微小的110μmx110μm平面铝电感器线圈作为我们的微型接收器线圈构建在硅基板上,它是通过3-D EM仿真设计和仿真的,其EM数据与来自高级IBM / Global的测量数据一致铸造厂的0.18μm互补金属氧化物半导体(CMOS)绝缘体上硅(SOI)工艺技术。通过将小型继电器线圈用于优化的四线圈WPT系统以达到SCMR条件,EM仿真表明,与传统的2相比,可以使发射机线圈到微型接收机线圈之间的无线功率传输增加大约300%至400% -线圈在5.8 GHz ISM频段上的电感谐振系统,使得SCMR对于可植入生物电子学和生物传感器应用(例如耳蜗植入物,胶囊内窥镜和起搏器)非常有吸引力。我们的研究的特点是最小的接收器线圈(面积约小330倍)比以前报道的用于无线功率传输的感应耦合中使用的最小接收器线圈小。

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