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Dielectric notch radiator antennas with integrated filtering for 5G and IoT access

机译:具有5G和IoT接入集成滤波功能的介电陷波辐射器天线

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The development of dielectric notch radiator (DNR) antennas is described with integrated filters for 5G and IoT systems. The DNR is a type of tapered slot antenna (TSA) and is similar to the familiar Vivaldi antenna except that the length of the DNR is much shorter than a Vivaldi. The five step design process for the DNR is given and expands upon prior exponential taper design methods. The optimization and analysis of the microstrip to slot line section uses the finite element method (FEM). The DNR is used for a X-band antenna and line array. The single element simulated and measured return loss and antenna gain pattern are shown. The gain pattern for a four element line array is shown. The DNR is then used for an antenna system operating in the mobile phone and Wi-Fi bands. The antenna is integrated with filters to form a solution with application to 5G and internet of things (IoT) over Zigbee or Wi-Fi systems. The results demonstrate how the DNR antenna can be applied to solve wide band antenna design requirements where antenna length is an important design constraint.
机译:描述了带有用于5G和IoT系统的集成滤波器的介电陷波辐射器(DNR)天线的开发。 DNR是一种锥形缝隙天线(TSA),它与熟悉的Vivaldi天线相似,只是DNR的长度比Vivaldi短得多。给出了DNR的五步设计过程,并扩展了先前的指数锥度设计方法。微带至缝线段的优化和分析使用有限元方法(FEM)。 DNR用于X波段天线和线阵列。显示了单元素模拟和测量的回波损耗以及天线增益方向图。显示了四元素线阵列的增益模式。然后,将DNR用于在手机和Wi-Fi频段中运行的天线系统。天线与滤波器集成在一起,形成了一种解决方案,可通过Zigbee或Wi-Fi系统应用于5G和物联网(IoT)。结果表明,在天线长度是重要设计约束的情况下,如何将DNR天线用于解决宽带天线设计要求。

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