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Flexible Wearable Antenna for Body Centric Wireless Communication in S-Band

机译:用于S波段以人体为中心的无线通信的柔性可穿戴天线

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Passive Microwave Imaging (PMI) has been widely studied for breast cancer detection in recent times. Sensing dielectric property differences of tissues over a wide frequency band has been made possible by ultra-wideband (UWB) techniques. In this paper, a flexible, compact monopole antenna on a Kapton polyimide is designed and fabricated, using a Computer Simulation Technology simulator (CST) and MEMS technology, to be in contact with biological breast tissues over the S-Band (2-4 GHz). The antenna parameters are optimized to obtain a good impedance match over the required frequency range. The operation of the antenna close to the human body necessitates adjusting its design for the intended applications whereas the maximum SAR value estimated in such conditions has to respect the standards. In this context, simulation tools that can take into account specific biological models offer a range of possibilities for investigating and optimizing the performance of Body-Centric Wireless Networks (BCWNs) devices.
机译:被动微波成像(PMI)近年来已被广泛研究用于乳腺癌的检测。通过超宽带(UWB)技术,可以在宽频带上检测组织的介电特性差异。在本文中,使用计算机仿真技术模拟器(CST)和MEMS技术设计和制造了Kapton聚酰亚胺上的柔性紧凑型单极天线,使其与S波段(2-4 GHz)上的生物乳腺组织接触。 )。对天线参数进行了优化,以在所需的频率范围内获得良好的阻抗匹配。天线靠近人体的操作必须针对预期应用调整其设计,而在这种情况下估算的最大SAR值必须遵守标准。在这种情况下,可以考虑特定生物学模型的仿真工具为研究和优化以人体为中心的无线网络(BCWN)设备的性能提供了多种可能性。

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