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Characterisation and optimisation of a coplanar waveguide fed logarithmic spiral antenna

机译:共面波导馈电对数螺旋天线的表征与优化

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摘要

A cavity backed coplanar waveguide (CPW) to coplanar strip (CPS)-fed logarithmic uniplanar spiral antenna, which covers a 9 to 1 bandwidth with a return loss better than 10 dB from 0.4 to 3.8 GHz is presented. A wideband balun is used to accomplish the transition from the unbalanced CPW transmission line to the balanced CPS transmission line. The balun exhibits an insertion loss of less than 3 dB in a frequency band from sub-100 kHz and up to a frequency of 3.85 GHz. The numerical results presented are based on simulations using the IE3D Version 6.03 for Windows 98. The obtained numerical results are in good agreement with experimental data. The spiral antenna is designed and prototyped for the FR-4 substrate. By placing the antenna on the FR-4 substrate it yields a low cost solution. Simulations have shown that the input impedance remains essentially constant over a bandwidth which is larger than 11 to 1. The simulated as well as the measured input impedance for the spiral antenna is 80 Ω. Measurements in an anechoic chamber have been made in order to measure the radiation pattern and the directivity of the antenna. The cavity backed spiral antenna exhibits a unidirectional radiation pattern, due to the absorbing material. Only half of the input power is transformed into radiated power due to the presence of the absorber. The simulated performance of the spiral antenna is very promising. The simulations indicated that the antenna has a radiation efficiency of more than 70% and an axial ratio and a return loss better than 3.5 dB and 10 dB, respectively, in the frequency band from 0.4 to 3.8 GHz.
机译:提出了一个腔背共面波导(CPW)到共面带(CPS)馈送的对数单面螺旋天线,该天线覆盖9至1的带宽,在0.4至3.8 GHz范围内的回波损耗优于10 dB。宽带巴伦用于完成从不平衡CPW传输线到平衡CPS传输线的过渡。平衡-不平衡转换器在从低于100 kHz到最高3.85 GHz的频带中的插入损耗小于3 dB。给出的数值结果是基于使用Windows 98的IE3D版本6.03进行的仿真得出的。所得的数值结果与实验数据非常吻合。螺旋天线是为FR-4基板设计并制作原型的。通过将天线放在FR-4基板上,可以提供一种低成本的解决方案。仿真表明,在大于11到1的带宽内,输入阻抗基本上保持恒定。螺旋天线的仿真以及测量的输入阻抗均为80Ω。为了测量天线的辐射方向图和方向性,已经在消声室内进行了测量。由于吸收材料,背腔螺旋天线呈现出单向辐射方向图。由于吸收器的存在,只有一半的输入功率转换为辐射功率。螺旋天线的仿真性能非常有前途。仿真表明,该天线在0.4至3.8 GHz频带内的辐射效率超过70%,轴向比和回波损耗分别优于3.5 dB和10 dB。

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