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Mickey Mouse Modeled MIMO Antenna for Extended UWB Applications

机译:米老鼠建模的MIMO天线,用于扩展的UWB应用

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In this digital world, data speed is expected to be around 10Gbps. Internet of Things (IoT) is mainly implemented in industries, automotive and medicine applications so 5G is developed. The paper puts forth a hybridized slot circular printed multiple input multiple output (MIMO) antenna with differentiated ground and dual ports for Ku- band frequencies ranging from twelve to eighteen gigahertz X- band frequencies ranging from eight to twelve gigahertz and C- band frequencies ranging from four to eight gigahertz applications with little bit coverage of S- & K- band also. Hybrid slots are etched from radiating element for enhancing the bandwidth from Ultra Wide Band (UWB) to extended UWB range, which is suitable for 5G communication systems. The maximum peak gain over the operated band is 6. 87dBi. Additionally, the coefficients for the total reflection (<.4) and envelope correlation (.03), diversity gain (10dB) and the capacity loss of the channels (<.02) are analyzed for obtaining the high isolation between radiating elements. This structure has been designed and simulated using HFSS simulation tool.
机译:在这个数字世界中,数据速度有望达到10Gbps。物联网(IoT)主要在工业,汽车和医药应用中实现,因此开发了5G。论文提出了一种混合式缝隙圆形印刷多输入多输出(MIMO)天线,具有差分接地和双端口,适用于12至18千兆赫兹的Ku频段,而8至12吉赫兹的X频段以及C频段从4到8 GHz的应用,S-和K频段的覆盖范围也很小。从辐射元件上蚀刻出混合插槽,以增强从超宽带(UWB)到扩展UWB范围的带宽,适用于5G通信系统。在工作频带上的最大峰值增益为6。87dBi。此外,分析了全反射系数(<.4)和包络相关系数(.03),分集增益(10dB)和通道的容量损耗(<.02),以获得辐射元件之间的高隔离度。该结构已使用HFSS仿真工具进行了设计和仿真。

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