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Area Optimized Rectangular Spiral Antenna for Bluetooth Communication

机译:面积优化的蓝牙通信矩形螺旋天线

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In this paper, a simulated design of a rectangular spiral antenna is proposed. The antenna is tuned for communication in the ISM band at 2.4GHz. The frequency of choice enables the proposed antenna to be used in a number of IoT based devices using popular wireless networks like Bluetooth and WiFi. The design has been built with FR4 material as the substrate with conductive copper lines, which can be easily fabricated on a PCB. When the coil is used to communicate at 2.374 GHz, the reflection coefficient is −30.5 dB, with a bandwidth of 150.7 MHz for ‖S11‖ ≤ -10 dB, i.e., a fractional bandwidth of 6.53%. The VSWR is obtained to be 1.05 at 2.374 GHz. The radiation efficiency a t 2.4 G Hz is obtained as 38.3%. A thorough comparative study with a traditional coil and the effects of separating the outermost coil on bandwidth, radiation efficiency, ‖S11‖ and VSWR has also been studied. Overall, we see a 70.3% reduction in area when compared with existing works. Our paper also lays out the methodology to tune rectangular spiral antennas to certain frequencies. This research is a 1 of 3 work, with the scope to go towards multi functional coil design capable of Bluetooth Communication, Capacitive touch and Wireless Charging.
机译:在本文中,提出了一种矩形螺旋天线的模拟设计。在2.4GHz的ISM频段中调谐天线以进行通信。首选频率使得所提出的天线能够使用像蓝牙和WiFi等流行的无线网络的基于IOT基础的设备。该设计已经用FR4材料作为具有导电铜线的基板构建,可以在PCB上容易地制造。当线圈用于以2.374GHz通信时,反射系数为-30.5dB,带宽为150.7MHz,即‖11‖≤-10dB,即分数带宽为6.53%。将VSWR获得为1.05,为2.374 GHz。辐射效率为T 2.4g Hz获得为38.3%。还研究了一种具有传统线圈的彻底对比研究以及将最外圈对带宽,辐射效率,‖S11‖和VSWR分离的影响。总体而言,与现有工程相比,我们看到区域的减少70.3%。我们的论文还阐述了对某些频率调整矩形螺旋天线的方法。这项研究是3个工作中的1个,范围朝着多功能线圈设计,能够进行蓝牙通信,电容式触摸和无线充电。

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