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Design of frequency reconfigurable antenna using dual band electromagnetic band gap structure

机译:使用双频带电磁带隙结构设计频率可重构天线

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Objectives/Method: An innovative fractal shape of Electromagnetic Band Gap (EBG) structure is proposed in this study which has dual bandgap.The proposed frequency reconfigurable antenna is integrated with the EBG structure to improve performance parameters. CST Microwave Studio Software is used for simulation. The proposed EBG has dual bandgap S-band (2 GHz to4 GHz) and X-band (8 GHz to 10 GHz). The proposed reconfigurable antenna operates at frequencies one in S-band and another in X-band. PIN diode is used to change the structure of the antenna so that it can operate at two different frequencies (2.67 GHz and 8.8 GHz). Simulated and measured results are compared. Findings: When PIN diode is ON, antenna operates at 2.67 GHz and at 8.7 GHz when PIN diode is OFF. Since antenna is integrated with the proposed EBG structure, gain and bandwidth of the antenna is increased with EBG structure as compared to without EBG structure at both frequencies.Simulated and measured results are compared and found good agreement.Applications of this antenna are radar applications, satellite communication,microwave applications, space applications. Novelty: It is observed that most of the antennas are designed with either EBG structure for improvement in parameters or are designed as reconfigurable antennas to operate at different frequency bands. In the proposed design, reconfigurable antenna is designed along with EBG structure which gives: ? Compact structure ? Improvement in parameter viz gain, bandwidth for all frequencies.
机译:目的/方法:在该研究中提出了一种具有双带隙的电磁带隙(EBG)结构的创新分形形状。所提出的频率可重新配置天线与EBG结构集成以改善性能参数。 CST Microwave Studio软件用于仿真。所提出的EBG具有双带隙S波段(2 GHz TO4 GHz)和X波段(8 GHz到10 GHz)。所提出的可重新配置天线在S波段中的频率下操作,另一个在X波段中操作。引脚二极管用于改变天线的结构,使其可以在两个不同的频率下操作(2.67 GHz和8.8 GHz)。比较模拟和测量结果。调查结果:当引脚二极管打开时,当PIN二极管关闭时,天线在2.67 GHz和8.7 GHz时运行。由于天线与所提出的EBG结构集成,因此与在两个频率的eBG结构的情况下相比,天线的增益和带宽随着EBG结构而增加。比较并找到测量结果并找到了良好的协议。该天线的应用是雷达应用,卫星通信,微波应用,空间应用。新颖性:观察到,大多数天线都设计有EBG结构,用于改进参数,或者被设计为可重新配置的天线以在不同的频带处运行。在拟议的设计中,可重新配置的天线与EBG结构一起设计,其提供:?结构紧凑?改进参数viz增益,所有频率的带宽。

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