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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Characteristics Verification of a Half-Wave Dipole Very Close to a Conducting Plane With Excellent Impedance Matching
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Characteristics Verification of a Half-Wave Dipole Very Close to a Conducting Plane With Excellent Impedance Matching

机译:具有优良阻抗匹配的非常接近导电平面的半波偶极子的特性验证

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A half-wave dipole located very close to a conducting plane with distance of lambda/30 is investigated. The configuration has an impedance matching function and a balanced feed built in the antenna structure so that an external matching or a balun is not required. The experimental result verifies the numerical analysis by method of moments (MoM), and well explains the predecessors' analytical results by classical methods. The maximum radiation occurs in the normal direction to a reflector plane. We have achieved a maximum gain of 8.4 dBi which is higher than that of a half-wave dipole with a quarter wavelength distance between the reflector. The bandwidth for -10 dB is about 2%. The electric field distribution is studied to show the creation and propagation of electromagnetic waves which correspond to the energy flows in the normal direction to the conductor plane and also sideward along the plane in a small amount. The field lines are shown to be frozen between the dipole and the conductor plane without propagation. Accordingly, this state may be called a quadruple mode
机译:研究了一个非常接近导体平面的半波偶极子,其距离为λ/ 30。该配置具有阻抗匹配功能和内置于天线结构中的平衡馈源,因此无需外部匹配或不平衡变压器。实验结果通过矩量法(MoM)验证了数值分析,并通过经典方法很好地解释了前人的分析结果。最大辐射发生在垂直于反射器平面的方向上。我们已经实现了8.4 dBi的最大增益,该增益高于反射器之间四分之一波长距离的半波偶极子的最大增益。 -10 dB的带宽约为2%。研究了电场分布,以显示电磁波的产生和传播,电磁波对应于能量在垂直于导体平面的方向上流动,也沿该平面向侧面少量流动。场线显示为冻结在偶极子和导体平面之间,没有传播。因此,该状态可以称为四重模式

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