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Mutual Coupling Effect on Ultrawideband Linear Antenna Array Performance

机译:对超宽带线性天线阵列性能的互联耦合效应

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摘要

This paper studies the mutual coupling effect between array elements of two- and four-element ultrawideband (UWB) linear arrays on their performances. For simplicity, it is assumed that both antenna arrays are fed by independent microstrip lines with the same power amplitudes and equal phases. From our study, array bandwidth improvement is achieved for both array types when the mutual coupling is strong enough or interelement spacing is small. The mutual coupling also enhances the array realized gain especially in the midfrequency band (5–8.5 GHz) while it deteriorates the gain outside that frequency range. Proper tuning for interelement spacing with enough mutual coupling enhances the array realized gain at most frequencies and makes it more stable across the desired frequency range. From the radiation pattern results, the grating lobes appear in UWB arrays when the element spacing is greater than two wavelengths at the upper edge frequency, 10.6 GHz, or half wavelength at the lower edge frequency 3.1 GHz. Two fabricated array prototypes with corporate feed are fabricated and tested to validate the theoretical analysis. The effect of using T-junction power divider is clear on the reflection coefficient |S11|. Both numerically simulated and experimental results successfully demonstrate our analysis.
机译:本文研究了两组和四元素超广域带(UWB)线性阵列的阵列元件之间的相互耦合效应。为简单起见,假设两个天线阵列由具有相同功率幅度和相等阶段的独立微带线馈送。从我们的研究来看,当相互耦合足够强或时隙间距时,两个阵列类型都是为两个阵列类型实现的阵列带宽改进。相互耦合还增强了阵列实现的增益,尤其是在中频带(5-8.5 GHz)中,而在该频率范围之外的增益下降。具有足够相互耦合的时隙间距的适当调谐增强了大多数频率的阵列实现的增益,并且在所需的频率范围内使其更稳定。从辐射图案结果,当元件间距大于上边缘频率的大于两个波长,在下边缘频率为3.1GHz处于上边缘频率,10.6GHz或半波长时,光栅叶片出现在UWB阵列中。使用公司饲料的两种制造的阵列原型,并测试并测试以验证理论分析。在反射系数上透明使用T-结功率分配器的效果。在数值模拟和实验结果上都成功地证明了我们的分析。

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