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Three-dimensional aperture principle for end-fire radiation antenna array

机译:终端防辐射天线阵列的三维光圈原理

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According to the two-dimensional aperture principle, directivity and gain are expected to be proportional to the aperture area of an antenna or antenna array. Our simulations and measurements of an end-fire radiation antenna array overturn this conventional wisdom. The gain of an end-fire antenna array is found to be much higher than that calculated by the two-dimensional aperture principle. We introduce a length component into the two-dimensional aperture principle and propose a three-dimensional aperture principle. A four-element end-fire antenna array is designed and measured to verify the correctness of this new principle. The three-dimensional aperture principle opens a pathway to novel types of aperture utilization.
机译:根据二维孔径原理,预期方向性和增益与天线或天线阵列的孔径面积成比例。 我们的模拟和测量结束辐射天线阵列倾覆了这种传统智慧。 发现终端消防天线阵列的增益远高于通过二维孔径原理计算的。 我们将一个长度分量引入二维光圈原理,并提出了一种三维孔径原理。 设计并测量了四元件终端防火天线阵列,以验证这种新原理的正确性。 三维孔径原理打开了一种新颖的孔径利用类型的途径。

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