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Design of a Corner-Reflector Reactively Controlled Antenna for Maximum Directivity and Multiple Beam Forming at 2.4 GHz

机译:在2.4 GHz时具有最大指向性和多波束成形的角反射器无功控制天线的设计

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摘要

Electronically steerable passive array radiator (ESPAR) antennas constitute a promising research field and are expected to play important role in future wireless communications. In this paper, a new approach in ESPAR antenna design for base station applications is proposed. A corner-plate reflector is combined with active and passive (reactively loaded) elements in order to implement a corner-reflector ESPAR (CR-ESPAR) configuration. It is shown that when combined with corner reflectors in order to sectorize the coverage area, an ESPAR antenna offers multiple radiation patterns with higher directivity and resolution. A case study of a CR-ESPAR suitable for 2.4 GHz ISM applications is demonstrated, where the performance of the structure is optimized with respect to resonance frequency, input impedance, and multiple switched-beam patterns configuration. The optimization of the array is performed using a Genetic Algorithm (GA) tool as a method of choice, achieving a maximum gain equal to 14 dBi for a 30$^{circ}$ 3 dB-beamwidth and a gain of 11 dBi for a 45 $^{circ}$ 3 dB-beamwidth, while the VSWR is kept below 1.7 in all cases. Due to its limited physical size, the proposed CR-ESPAR can be used as a portable antenna for deployment in WiFi, WLAN and other applications.
机译:电子可控无源阵列辐射器(ESPAR)天线构成了一个有前途的研究领域,并有望在未来的无线通信中发挥重要作用。本文提出了一种针对基站应用的ESPAR天线设计新方法。角板反射器与主动和被动(无功负载)元件组合在一起,以实现角反射器ESPAR(CR-ESPAR)配置。结果表明,当与角反射器组合以对覆盖区域进行分区时,ESPAR天线可提供具有更高方向性和分辨率的多个辐射方向图。演示了适用于2.4 GHz ISM应用的CR-ESPAR的案例研究,该结构的性能针对谐振频率,输入阻抗和多个开关光束图案配置进行了优化。阵列的优化是使用遗传算法(GA)工具作为一种选择方法进行的,对于30dB的3 dB波束宽度,最大增益等于14 dBi;对于30dB的波束宽度,可获得11 dBi的增益。 45 $ ^ {circ} $ 3 dB波束宽度,而VSWR在所有情况下均保持在1.7以下。由于其有限的物理尺寸,建议的CR-ESPAR可用作便携式天线,用于在WiFi,WLAN和其他应用中进行部署。

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