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CPW-Fed Cavity-Backed Slot Radiator Loaded With an AMC Reflector

机译:装有AMC反射镜的CPW馈送腔后槽式散热器

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A low profile coplanar waveguide (CPW) fed printed slot antenna is presented with uni-directional radiation properties. The slot antenna radiates above a closely spaced artificial magnetic conducting (AMC) reflector consisting of an array of rectangular patches, a substrate and an electric ground plane. The electromagnetic bandgap (EBG) performance of the cavity structure between the upper conducting surface in which the slot is etched, and the ground plane at the bottom of the reflector, is investigated using an equivalent waveguide feed in the place of a half-wavelength section of the slot antenna. From the reflection coefficient of the equivalent waveguide feed one can determine the frequency band where minimum energy will be lost due to unwanted radiation from the cavity sides. The dimensions of the cavity were found to be very important for minimum energy loss. Experimental results for the final antenna design (with a size of $1.02lambda_{0}times 0.82lambda_{0}times 0.063lambda_{0}$), mounted on a $1.5lambda_{0}times 1.5lambda_{0}$ back plate, exhibit a 5% impedance bandwidth, maximum gain in excess of 10 dBi, low cross-polarization, and a front-to-back ratio of approximately 25 dB. This low-profile antenna with relatively high gain could be a good candidate for a 2.4 GHz WLAN application.
机译:提出了一种具有单向辐射特性的薄型共面波导(CPW)馈电印刷缝隙天线。缝隙天线在由矩形贴片,基板和电接地平面组成的紧密间隔的人造磁(AMC)反射器上方辐射。使用等效波导馈源代替半波长段来研究刻蚀槽的上导电表面与反射器底部的地平面之间的空腔结构的电磁带隙(EBG)性能缝隙天线的根据等效波导馈源的反射系数,可以确定由于空腔侧的有害辐射而损失最小能量的频带。发现腔的尺寸对于最小化能量损失非常重要。最终天线设计(尺寸为$ 1.02lambda_ {0}乘以0.82lambda_ {0}乘以0.063lambda_ {0} $)的实验结果,安装在$ 1.5lambda_ {0}乘以1.5lambda_ {0} $的背板上,具有5%的阻抗带宽,超过10 dBi的最大增益,较低的交叉极化和大约25 dB的前后比。这种具有相对较高增益的薄型天线可能是2.4 GHz WLAN应用的理想选择。

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