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Composite right–left-handed-based antenna with wide applications in very-high frequency–ultra-high frequency bands for radio transceivers

机译:基于右手和左手的复合天线,在无线电收发器的极高频率至超高频带中具有广泛的应用

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This study presents a metamaterial-based antenna using the concept of composite right–left-handed transmission-lines. The radiation-cells layouts are based on L/F-shaped slits, so these slits are engraved on the radiation-patches for establishing a series-capacitor effect. Moreover, the radiation cells including the spirals and via-holes for the shunt-inductors implementation. By cascading the proper number of cells, the desired antennas for very/ultra-high frequency-bands are designed. The first-antenna with four L-shaped cells isconstructed on the Rogers_RO4003 substrate with thickness of 0.8 mm, so that each of cells occupies the size of 2.3 mm × 4.9 mm. This antenna covers the experimental-bandwidth of 0.2–1.8 GHz, which corresponds to 160% feasible-bandwidth. This antenna resonates at frequencies of 600–850–1200–1550 MHz, so highest gain and efficiency, happened at 1550 MHz, are 3.4 dBi and 88%. For improving the antenna performances, the second-antenna is modelled with one-cell more than first-antenna and with changing in the slit configuration to F-shape and increasing in the same substrate thickness to 1.6 mm. F-shaped antenna has size of 14.5 mm × 4.4 mm × 1.6 mm, covering a measured-bandwidth of 0.11–2.1 GHz with five resonance frequencies at 450–725–1150–1670–1900 MHz, which corresponds to 180.1% practical-bandwidth. Maximum of the measured gain and efficiency of antenna are 4.5 dBi and 95%, which occur at 1900 MHz.
机译:这项研究提出了一种使用复合材料左右手传输线概念的基于超材料的天线。辐射单元的布局基于L / F形缝隙,因此这些缝隙会刻在辐射斑片上,以建立串联电容器效应。此外,辐射单元包括用于并联电感器实现的螺旋和通孔。通过级联适当数量的小区,可以设计用于非常/超高频带的所需天线。具有四个L形单元的第一个天线构造在厚度为0.8毫米的Rogers_RO4003基板上,因此每个单元的尺寸为2.3毫米×4.9毫米。该天线覆盖了0.2–1.8 GHz的实验带宽,相当于160%的可行带宽。该天线在600–850–1200–1550 MHz的频率下谐振,因此在1550 MHz处发生的最高增益和效率分别为3.4 dBi和88%。为了提高天线性能,对第二天线的建模比第一天线多一个单元,并且将缝隙配置更改为F形,并将相同的基板厚度增加到1.6 mm。 F形天线的尺寸为14.5 mm×4.4 mm×1.6 mm,覆盖的测量带宽为0.11–2.1 GHz,在450–725–1150–1670–1900 MHz范围内具有五个谐振频率,相当于180.1%的实际带宽。天线的最大测量增益和效率为4.5 dBi和95%,这发生在1900 MHz时。

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