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On the lower bound of the radiation Q for electrically small antennas

机译:在电子小型天线的辐射Q的下界

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The fundamental question of the lower bound on the radiation Q of an electrically small antenna is of practical importance because of its relationship to the antenna bandwidth. Previous works predict a lower bound on the radiation Q that is usually too low and, hence, a bandwidth that can be optimistically large. This paper addresses why this is so and offers a new prediction for a realizable lower bound on the radiation Q. This new prediction is based on the far-field pattern, in both the visible and invisible spatial regions, in contrast to previous works based upon a near-field modal approach. Results for a linear dipole, bow-tie, and end-loaded dipole are presented to illustrate the validity of the lower bound presented herein. Radiation Q can be related to bandwidth provided the Q is adequately large. Implicit is the presence of a matching network as a part of the antenna system. Both the losses in the antenna and the losses in the matching network have an effect on the system bandwidth, the system efficiency and the system Q, of which the radiation Q is a part. These various relationships are also discussed.
机译:电气上小的天线的辐射Q的下限的基本问题由于其与天线带宽的关系而具有实际意义。先前的工作预测辐射Q的下限通常太低,因此带宽可能会很大。本文讨论了为什么会这样,并为辐射Q的可实现下限提供了新的预测。与以前的工作相比,这种新的预测基于可见和不可见空间区域中的远场模式。近场模态方法。给出了线性偶极子,领结和端载偶极子的结果,以说明本文提出的下界的有效性。如果Q足够大,则辐射Q可以与带宽相关。隐含的是存在匹配网络作为天线系统的一部分。天线的损耗和匹配网络的损耗都对系统带宽,系统效率和系统Q产生影响,辐射Q是其中的一部分。还讨论了这些各种关系。

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