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Acoustic polarization for optimized implantable power transimittion

机译:用于优化的可植入功率分子的声学极化

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We present a fully-packaged acoustic power receiver which is implantable in the subcutaneous tissue to receive the acoustic energy generated from a compressive wave emitter on the skin. The implanted receiver is a piezoelectric acoustic transducer and is packaged by biocompatible cohesive gels. This specific package is soft enough to absorb the incident wave from the subcutaneous tissue. The receiver employs direct charging to convert the acoustic energy into the extractable electrical energy through piezoelectricity when exposed to the acoustic field. The effects of the scattering package shape and the stiffness ratio between the package and subcutaneous tissue are considered to design the receivers. The energy efficiency of the fabricated receiver is measured inside real streaky pork, which is used to simulate human subcutaneous tissue. The result indicates that the spherical package is more suitable than the cubic one when they are buried in the fatty layer. The maximum efficiency of the power transmission is found to be −40dB.
机译:我们介绍了一种完全封装的声学电力接收器,其可植入皮下组织中,以接收从皮肤上的压缩波发射器产生的声学能量。植入式接收器是压电声换能器,并通过生物相容性粘性凝胶包装。该特定包装足以吸收来自皮下组织的入射波。当暴露于声场时,接收器采用直接充电将声能转换为通过压电的可提取的电能转换为可提取的电能。认为散射封装形状和包装和皮下组织之间的刚度比的影响被认为是设计接收器。在真正的条纹猪肉内测量制造接收器的能量效率,用于模拟人的皮下组织。结果表明,当它们埋入脂肪层时,球形包装比立方体更合适。发现电力传输的最大效率为-40dB。

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