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首页> 外文期刊>International journal of antennas and propagation >High Gain and High Directive of Antenna Arrays Utilizing Dielectric Layer on Bismuth Titanate Ceramics
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High Gain and High Directive of Antenna Arrays Utilizing Dielectric Layer on Bismuth Titanate Ceramics

机译:利用钛酸铋陶瓷上介电层的天线阵列的高增益和高指向性

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摘要

A high gain and high directive microstrip patch array antenna formed from dielectric layer stacked on bismuth titanate (BiT) ceramics have been investigated, fabricated, and measured. The antennas are designed and constructed with a combination of two-, four-, and six-BiT elements in an array form application on microwave substrate. For gain and directivity enhancement, a layer of dielectric was stacked on the BiT antenna array. We measured the gain and directivity of BiT array antennas with and without the dielectric layer and found that the gain of BiT array antenna with the dielectric layer was enhanced by about 1.4 dBi of directivity and 1.3 dB of gain over the one without the dielectric layer at 2.3 GHz. The impedance bandwidth of the BiT array antenna both with and without the dielectric layer is about 500 MHz and 350 MHz, respectively, which is suitable for the application of the WiMAX 2.3 GHz system. The utilization of BiT ceramics that covers about 90% of antenna led to high radiation efficiency, and small-size antennas were produced. In order to validate the proposed design, theoretical and measured results are provided and discussed.
机译:由堆叠在钛酸铋(BiT)陶瓷上的介电层形成的高增益,高定向微带贴片阵列天线已得到研究,制造和测量。这些天线的设计和构造是将两个,四个和六个BiT元件组合在一起,以阵列形式应用在微波基板上。为了提高增益和方向性,在BiT天线阵列上堆叠了一层电介质。我们测量了带和不带电介质层的BiT阵列天线的增益和方向性,发现带电介质层的BiT阵列天线的增益比不带电介质层的BiT阵列天线的增益提高了约1.4 dBi和1.3 dB的增益。 2.3 GHz。带有和不带有介电层的BiT阵列天线的阻抗带宽分别约为500 MHz和350 MHz,适用于WiMAX 2.3 GHz系统的应用。 BiT陶瓷的使用覆盖了大约90%的天线,从而提高了辐射效率,并生产了小尺寸的天线。为了验证所提出的设计,提供并讨论了理论和测量结果。

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    School of Computer and Communication Engineering, Universiti Malaysia Perlis (UniMAP), 02600 Arau, Malaysia;

    School of Electrical Systems Engineering, Universiti Malaysia Perlis (UniMAP), 02600 Arau, Malaysia;

    School of Computer and Communication Engineering, Universiti Malaysia Perlis (UniMAP), 02600 Arau, Malaysia;

    School of Material and Mineral Resources, Universiti Sains Malaysia (USM), 11800 Gelugor, Malaysia;

    School of Material and Mineral Resources, Universiti Sains Malaysia (USM), 11800 Gelugor, Malaysia;

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