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New design of UWB-MIMO antenna with enhanced isolation and dual-band rejection for WiMAX and WLAN systems

机译:用于WiMAX和WLAN系统的具有增强的隔离和双频抑制功能的UWB-MIMO天线的新设计

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摘要

In this work, a new design of wide-band multiple-input multiple-output (MIMO) antenna with improved isolation and dual-band rejection is proposed for wireless systems operating over the entire ultra-wide-band (UWB), X-band, and Ku-band (3-18GHz). The proposed four-element UWB-MIMO antenna is fabricated on Rogers RT/Duroid-5880 substrate with dimension of 73x73x0.79mm(3). It achieves high isolation (>20dB) between antenna elements without using any decoupling structures. In order to prevent interference problems from nearby WiMAX (3.3-3.8GHz) and WLAN (5.1-5.8GHz) systems, a C-shaped stub is embedded in the radiating patch and a pair of U-shaped parasitic strips is inserted beside the feed line in the single element design. The effectiveness of the proposed design is demonstrated by investigating measurement and simulation results, and comparing them with other existing designs. The results show that the proposed design has an input reflection coefficient <-10dB, a mutual coupling <-20dB, and an omnidirectional radiation pattern across the bandwidth of interest (3-18GHz) excluding the two rejected bands. Also, the proposed design exhibits high diversity performance in terms of envelope correlation coefficient (ECC <0.0015) and channel capacity loss (CCL<0.3bits/s/Hz). This reveals the effectiveness of the proposed design in wide-band wireless applications such as satellite communications and microwave medical imaging.
机译:在这项工作中,针对在整个超宽带(UWB),X频段上运行的无线系统,提出了一种新设计的宽带多输入多输出(MIMO)天线,该天线具有更高的隔离度和双频抑制性能和Ku频段(3-18GHz)。拟议的四元素UWB-MIMO天线是在Rogers RT / Duroid-5880基板上制造的,尺寸为73x73x0.79mm(3)。它无需使用任何去耦结构即可在天线元件之间实现高隔离度(> 20dB)。为了防止来自附近的WiMAX(3.3-3.8GHz)和WLAN(5.1-5.8GHz)系统的干扰问题,在辐射贴片中嵌入了一个C形短截线,并在馈源旁边插入了一对U形寄生带。线在单元素设计中。通过研究测量和仿真结果,并将其与其他现有设计进行比较,可以证明所提出设计的有效性。结果表明,所提出的设计的输入反射系数<-10dB,互耦<-20dB,并且在除两个拒绝频带之外的整个感兴趣带宽(3-18GHz)上具有全向辐射方向图。同样,提出的设计在包络相关系数(ECC <0.0015)和信道容量损耗(CCL <0.3bits / s / Hz)方面表现出高分集性能。这揭示了所提出的设计在宽带无线应用(例如卫星通信和微波医学成像)中的有效性。

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