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A High-Gain Single-Feed Dual-Mode Microstrip Disc Radiator

机译:高增益单馈双模微带圆盘散热器

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摘要

A novel high-gain circular microstrip radiator is proposed. The antenna consists of two circular discs, in a stacked configuration, designed to operate in and modes. The patches are designed, so that the resonant frequencies for both modes converge into a single frequency. It is found that by simultaneous excitation of both resonant modes, high gain and low sidelobe level (SLL) can be obtained in the radiation patterns. Excitation is done using a single coaxial feed. The fundamental working principle of the antenna is based on the superposition of radiated far fields of the and modes. At first, through a pattern synthesis, using different far field mode amplitude ratios, it is shown that the substrate dielectric constants can be selected for both layers such that it leads to low SLL. Next, for practical antenna design, the mode excitation, input impedance, and radiation properties of the mode are studied. For sound understanding and explanation, the edge voltage ratio at the aperture and mode amplitude ratio in the far field are calculated and their effects on SLL and peak directivity are discussed. Finally, the measurements results are provided in support of simulations.
机译:提出了一种新颖的高增益圆形微带辐射器。天线由两个圆盘组成,两个圆盘处于堆叠状态,旨在以和模式工作。对贴片进行了设计,以使两种模式的谐振频率都收敛为一个频率。已经发现,通过同时激发两个共振模式,可以在辐射方向图中获得高增益和低旁瓣电平(SLL)。励磁使用单个同轴进给进行。天线的基本工作原理是基于和模式的辐射远场的叠加。首先,通过图案合成,使用不同的远场模式振幅比,表明可以为两层选择衬底介电常数,从而导致低SLL。接下来,对于实际的天线设计,研究了模式激励,输入阻抗和模式的辐射特性。为了更好地理解和解释声音,计算了远场光阑处的边缘电压比和模式振幅比,并讨论了它们对SLL和峰方向性的影响。最后,提供测量结果以支持仿真。

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