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On the accuracy of complex permittivity model of glucose/water solutions for non-invasive microwave blood glucose sensing

机译:葡萄糖/水溶液复介电常数模型在无创微波血糖检测中的准确性

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This paper discusses the accuracy of the current complex permittivity model for binary glucose/water solutions published in the open literature. An accurate model for different concentrations of binary glucose/water solutions is needed for the simulation and validation of radio frequency (RF)/Microwave glucose sensors for the purpose of non-invasive blood glucose measurement. Most liquids can be modeled by the Cole-Cole model when several parameters are known for a specific sample. These parameters are addressed in this paper for the glucose/water solutions of 100mg/dl-500mg/dl range. An open-ended coaxial probe was manufactured for measuring the permittivity values of glucose/water solutions. The values were extracted in MATLAB from the S-parameters obtained on the Vector Network Analyzer (VNA). A new set of Debye parameters were proposed for glucose/water solutions for the frequency range of 1GHz-8GHz.
机译:本文讨论了公开文献中发布的用于二元葡萄糖/水溶液的当前复介电常数模型的准确性。为了无创血糖测量的目的,为了模拟和验证射频(RF)/微波葡萄糖传感器,需要一种用于不同浓度的二元葡萄糖/水溶液浓度的准确模型。当已知特定样品的几个参数时,大多数液体都可以通过Cole-Cole模型进行建模。本文针对100mg / dl-500mg / dl范围的葡萄糖/水溶液解决了这些参数。制造了一种开放式同轴探针,用于测量葡萄糖/水溶液的介电常数。这些值是在MATLAB中从矢量网络分析仪(VNA)上获得的S参数中提取的。提出了一组新的Debye参数,用于1GHz-8GHz频率范围的葡萄糖/水溶液。

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