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Improved circuit model of open-ended coaxial probe for measurement of the biological tissue dielectric properties between megahertz and gigahertz

机译:用于测量兆赫兹与千兆赫兹之间生物组织介电特性的开放式同轴探针的改进电路模型

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摘要

This note describes an improved equivalent circuit analysis model for open-ended coaxial probes for measurement of the dielectric properties of biological tissues below the gigahertz level. Some parameters in the conventional model that influence the measurement results were found to be still relative to the dielectric properties of the test sample and the terminal admittance of the probe was found to be dependent on the frequency. This was not found to be the case with the conventional model. According to the simulation results in frequency range from 30 MHz to 1 GHz, a polynomial expression was found to fit the frequency-admittance curve for terminal admittance and the equivalent circuit expression of probe terminal admittance was finally modified. The simulated annealing algorithm was used to calculate the dielectric properties of the new expression. The accuracy of the improved model was validated through a simulation test and experiment based on a series of solutions over 30 MHz-1 GHz. The new model was compared to the conventional model and was found to provide more accurate permittivity estimation over a wider frequency range than the conventional model if said range was between megahertz and gigahertz.
机译:本说明描述了一种改进的等效电路分析模型,用于开放式同轴探针,用于测量低于千兆赫水平的生物组织的介电特性。发现传统模型中影响测量结果的一些参数仍然相对于测试样品的介电性能,并且发现探针的终端导纳取决于频率。常规模型没有发现这种情况。根据在30 MHz到1 GHz频率范围内的仿真结果,发现多项式表达式可以拟合终端导纳的频率导纳曲线,并最终修改了探针终端导纳的等效电路表达式。模拟退火算法用于计算新表达式的介电性能。通过一系列基于30 MHz-1 GHz的解决方案的仿真测试和实验,验证了改进模型的准确性。将新模型与常规模型进行了比较,发现该模型在兆赫兹和千兆赫兹之间的频率范围内,可以在比常规模型更宽的频率范围内提供更准确的介电常数估计。

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