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首页> 外文期刊>International journal of antennas and propagation >Improved Reflectarray Phase-Only Synthesis Using the Generalized Intersection Approach with Dielectric Frame and First Principle of Equivalence
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Improved Reflectarray Phase-Only Synthesis Using the Generalized Intersection Approach with Dielectric Frame and First Principle of Equivalence

机译:使用介电框架和等效第一原理的广义相交方法改进的仅反射阵列相位合成

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摘要

An improved reflectarray Phase-Only Synthesis technique which employs the generalized Intersection Approach (IA) algorithm is fully described. It is formulated with the First Principle of Equivalence and takes into account a dielectric frame which is usually present to screw the reflectarray breadboard to the supporting structure. The effects of the First Principle of Equivalence versus the Second Principle in the computation of the radiation patterns, as well as the dielectric frame, are assessed and taken into account in an efficient implementation of the generalized IA in order to obtain more accurate results. Different strategies to speed up the synthesis process are presented and to improve convergence. The technique is demonstrated through two examples for space and terrestrial applications: an isoflux pattern for global Earth coverage from a satellite and a Local Multipoint Distribution Service pattern for central stations of cellular systems, both with a working frequency of 25.5 GHz. In addition, experimental results validate the approach described in this work with a prototype with an isoflux pattern working at 30 GHz.
机译:全面描述了一种改进的反射阵列仅相位合成技术,该技术采用了广义交叉法(IA)算法。它是根据“等效的第一原理”制定的,并考虑了通常存在的将反射阵列面包板拧到支撑结构上的介电框架。为了获得更准确的结果,在有效实施广义IA的过程中,评估并考虑了等效的第一原理与第二原理对辐射方向图以及介电框架的影响。提出了加快合成过程并提高收敛性的不同策略。通过两个用于空间和地面应用的示例来演示该技术:一个用于卫星的全球地球覆盖的等通量模式和一个用于蜂窝系统中心站的本地多点分布服务模式,两者的工作频率均为25.5 GHz。另外,实验结果验证了该工作中描述的方法是否具有在30 GHz下工作的等通量模式的原型。

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  • 来源
    《International journal of antennas and propagation》 |2017年第2期|3829390.1-3829390.11|共11页
  • 作者单位

    Univ Oviedo, Dept Elect Engn, Edificio Polivalente,Modulo 8, Gijon 33203, Spain;

    Univ Oviedo, Dept Elect Engn, Edificio Polivalente,Modulo 8, Gijon 33203, Spain;

    Univ Oviedo, Dept Elect Engn, Edificio Polivalente,Modulo 8, Gijon 33203, Spain;

    Univ Oviedo, Dept Elect Engn, Edificio Polivalente,Modulo 8, Gijon 33203, Spain;

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