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On Methods to Determine Bounds on the $Q$ -Factor for a Given Directivity

机译:关于确定给定方向上$ Q $-因子上界的方法

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摘要

This paper revisit and extend the interesting case of bounds on the Q-factor for a given directivity for a small antenna of arbitrary shape. A higher directivity in a small antenna is closely connected with a narrow impedance bandwidth. The relation between bandwidth and a desired directivity is still not fully understood, not even for small antennas. Initial investigations in this direction have related the radius of a circumscribing sphere to the directivity, and bounds on the Q-factor have also been derived for a partial directivity in a given direction. In this paper, we derive lower bounds on the Q-factor for a total desired directivity for an arbitrarily shaped antenna in a given direction as a convex problem using semidefinite relaxation (SDR) techniques. We also show that the relaxed solution is also a solution of the original problem of determining the lower Q-factor bound for a total desired directivity. SDR can also be used to relax a class of other interesting nonconvex constraints in antenna optimization, such as tuning, losses, and front-to-back ratio. We compare two different new methods to determine the lowest Q-factor for arbitrary-shaped antennas for a given total directivity. We also compare our results with full electromagnetic simulations of a parasitic element antenna with high directivity.
机译:本文针对任意形状的小型天线,针对给定的方向性,回顾并扩展了Q因子边界的有趣情况。小天线中较高的方向性与窄的阻抗带宽紧密相连。即使对于小型天线,带宽和所需方向性之间的关系仍未得到完全理解。在这个方向上的初步研究已经将外接球的半径与方向性相关联,并且对于给定方向上的部分方向性,还得出了Q因子的界限。在本文中,我们使用半定性松弛(SDR)技术推导了任意形状天线在给定方向上的总体期望指向性的Q因子下界,作为凸问题。我们还表明,松弛解也是确定总期望方向性下限Q因子的原始问题的解决方案。 SDR还可以用于放宽天线优化中的其他一些有趣的非凸约束,例如调谐,损耗和前后比率。我们比较了两种不同的新方法,以确定给定的总方向性下任意形状天线的最低Q因子。我们还将结果与具有高方向性的寄生元件天线的完整电磁仿真进行比较。

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