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Equivalent Circuits and Analysis of a Generalized Antenna System [Antenna Applications Corner]

机译:相应的电路和广义天线系统的分析[天线应用角落]

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摘要

It is well known that the maximum amount of power in an electrical or electronic system can be transferred to a load when its impedance is the complex conjugate of the source impedance, although, the power transfer efficiency is only 50%. Is this fact true for a radio system, as well? The question has existed for decades. In this article, the equivalent circuits of antenna systems are reexamined. It is demonstrated that classical equivalent circuit models based on the Th & eacute;venin and Norton theorems are not suitable for a receiving antenna system since the antenna cannot be simply approximated by a voltage or current source. A constant power source is required but not readily available. Thus, two new general power source models are introduced and examined. It is found that they may be suitable for a transmitting antenna system but not accurate enough for a receiving antenna when the antenna loss is taken into account. A novel special constant power source model is therefore proposed and shown to accurately simulate the behavior of a receiving antenna. When the load impedance is the complex conjugate of the antenna impedance, maximum power is obtained, and the power transfer efficiency is simultaneously maximized (up to 100% if the antenna system is lossless).
机译:众所周知,当其阻抗是源阻抗的复杂缀合物时,电气或电子系统中的最大功率可以转移到负载,尽管电力传输效率仅为50%。这是一个无线电系统的事实是真的吗?问题已经存在于几十年。在本文中,天线系统的等效电路被重新审视。据证明,基于TH和EACUTE的经典等效电路模型; Venin和Norton定理不适用于接收天线系统,因为天线不能被电压或电流源近似。不需要恒定的电源,但不可用。因此,引入并检查了两个新的一般电源模型。发现它们可能适用于发送天线系统,但是当考虑天线损耗时,对于接收天线而言,对于接收天线来说不够准确。因此提出了一种新颖的特殊恒定电源模型,并示出了精确地模拟接收天线的行为。当负载阻抗是天线阻抗的复合缀合物时,获得最大功率,并且功率传输效率同时最大化(如果天线系统无损,则高达100%)。

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  • 来源
    《IEEE Antennas & Propagation Magazine》 |2021年第2期|53-62|共10页
  • 作者单位

    Univ Liverpool High Frequency Engn Grp Liverpool L69 3GJ Merseyside England;

    Egyptian Tech Res & Dev Ctr Cairo 11618 Egypt;

    Heriot Watt Univ Edinburgh EH14 4AS Midlothian Scotland;

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