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An Improved Design of Microstrip Patch Antennas Using Photonic Bandgap Structure

机译:基于光子带隙结构的微带贴片天线改进设计

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Microstrip antennas inherently have a high input impedance at resonant frequency. This may not be convenient for some applications. For active integrated antennas, moreover, the radiated power of microstrip antennas needs to be very low at harmonic frequencies. The main goals of this study are impedance matching and harmonic suppression of microstrip antennas. In order to meet these requirements, two one-dimensional (1-D) photonic bandgap (PBG) structures, namely, the defected ground structure (DGS) and the compact microstrip resonant cell (CMRC), are applied to the feed line of microstrip antennas. The characteristic impedance of the microstrip line is controlled by the additional effective inductance of the PBG structure. Without any matching circuits, microstrip antennas can be easily fed by a simple 50 OMEGA microstrip line with a PBG structure at the operating frequency. Additionally, the second harmonic of the proposed antennas is properly suppressed compared to a conventional antenna. Measured results indicate that the two PBG structures are quite effective for harmonic suppression. Therefore, the proposed antennas are suitable for active integrated antennas.
机译:微带天线固有地在谐振频率下具有高输入阻抗。这对于某些应用程序可能不方便。此外,对于有源集成天线,微带天线的辐射功率在谐波频率下必须非常低。这项研究的主要目标是微带天线的阻抗匹配和谐波抑制。为了满足这些要求,将两个一维(1-D)光子带隙(PBG)结构,即缺陷接地结构(DGS)和紧凑型微带谐振单元(CMRC)应用于微带的馈线天线。微带线的特性阻抗由PBG结构的附加有效电感控制。没有任何匹配电路,微带天线可以很容易地通过一条简单的50 OMEGA微带线以PBG结构在工作频率下馈电。另外,与常规天线相比,所提出的天线的二次谐波被适当地抑制。测量结果表明,两个PBG结构对于抑制谐波非常有效。因此,所提出的天线适用于有源集成天线。

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