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Novel Wideband Microstrip Monopole Antenna Designs for WiFi/LTE/WiMax Devices

机译:用于WiFi / LTE / WiMAX设备的新型宽带微带单极天线设计

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In this paper, two compact and broadband microstrip monopole antennas have been proposed, designed, and presented using two novel sets of design equations. Each monopole antenna design has different dimension and characteristic. The proposed designs have been verified using a commercial electromagnetic simulator (CST-Studio) and implemented prototypes mounted on FR-4 substrate having a thickness of 1.6 mm. In addition, a linear array consists of only two monopole elements has been designed and presented to enhance the gain of the proposed monopole antenna. Simulation results confirmed the validity of the two novel sets of design equations for both monopole and array antennas. Also, the proposed array antenna (size), achieved a moderate gain of (6.0 dBi), a satisfying efficiency of (81 & x0025;), a VSWR that is less than 1.2 and a 22 & x0025; fractional bandwidth of about 1200 MHz. Moreover, simulated and measured return losses of the proposed monopole antennas (single and array) accomplish a reasonable agreement. The proposed monopole antennas are simple designs and compact in size, and they can be used for many wireless applications including WiFi, LTE, and WiMax. In addition, a compact array of large monopole number can achieve a higher gain that is up to 18 dBi (four to eight monopole array elements with overall size . The novelty of this paper is by introducing the proposed and closed form design equations for a monopole introducing the length of monopole and ground of substrate dimensions as a function of and thickness.
机译:在本文中,使用两组设计方程式提出,设计和呈现了两个紧凑型和宽带微带单极天线。每个单极天线设计具有不同的尺寸和特性。通过商用电磁模拟器(CST-Studio)已经验证了所提出的设计,并在厚度为1.6mm的FR-4基板上安装了原型。另外,线性阵列仅由两个单极元件设计和呈现,以增强所提出的单极天线的增益。仿真结果证实了单极和阵列天线两种新颖的设计方程组的有效性。此外,所提出的阵列天线(尺寸),实现了(6.0dBI)的中等增益,令人满意的效率(81&x0025;),vswr小于1.2和22&x0025;大约1200 MHz的分数带宽。此外,所提出的单极天线(单个和阵列)的模拟和测量回报损耗完成了合理的协议。所提出的单极天线的设计简单,尺寸紧凑,它们可用于许多无线应用,包括WiFi,LTE和WiMAX。此外,大小的大单极数阵列可以实现高达18 dBi的更高增益(具有整体尺寸的四到八个单极阵列元件。本文的新颖性是通过引入单极的提出和封闭的形式设计方程式作为函数和厚度引入衬底尺寸的单极和地的长度。

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