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Optimum core parameters for an electrically-small TE1 (loop) mode antenna with an inhomogeneous magneto-dielectric core

机译:具有不均匀磁电介质芯的电小型TE 1 (环形)天线的最佳芯参数

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Recent work concerning TE1 mode spherical wire antennas, essentially generalized loop antennas, has shown that: (1) the introduction of a lossless, homogeneous magnetic core into the interior of a TE1 mode spherical wire antenna cannot force the internal stored magnetic energy to zero, but rather only to a minimum value which depends on the external electrical size of the spherical antenna as well as the dielectric polarizability of the core; (2) the minimum value for internal energy is obtained with a particular finite, optimum value of permeability; and (3) employing a homogeneous core of this optimum permeability can actually make the antenna more conducive to supporting undesired modes, such as the TM1 (electric dipole) mode. In particular, the parasitic TM1 mode exhibits a series resonance at nearly the same point (electrical radius) at which minimum internal energy is effected for the TE1 mode. More recently, it was shown that a radially inhomogeneous core consisting of a conducting kernel and a magnetic mantle can reduce the internal magnetic energy of a TE1 mode spherical wire antenna even lower than can a homogeneous magnetic core. While the reduction in stored energy is not particularly significant, the possible reduction in weight and increase in mechanical robustness afforded by this geometry are very substantial. Here it is shown that for the kernel/mantle construction the series resonance of the parasitic TM1 mode is well away from the point of minimum TE1 mode energy, and thus an optimum design will not suffer from parasitic TM1 modes. Also, an approach for determining the optimum permeability and thickness of the mantle for the inhomogeneous core is presented.
机译:关于TE 1 模式球形导线天线(实质上是广义环形天线)的最新研究表明:(1)在TE 1的内部引入无损,均匀的磁芯模式的球形线状天线不能将内部存储的磁能强制为零,而只能强制为一个最小值,该最小值取决于球形天线的外部电气尺寸以及纤芯的介电极化率; (2)以特定的有限的最佳磁导率值获得内部能量的最小值; (3)采用具有最佳导磁率的均质磁芯实际上可以使天线更有利于支持不希望的模式,例如TM 1 (电偶极子)模式。尤其是,寄生TM 1 模式在几乎相同的点(电半径)处表现出串联谐振,在该点上,TE 1 模式产生的内部能量最小。最近,研究表明,由导电核和磁套组成的径向不均匀铁芯可以降低TE 1 球形天线的内部磁能,甚至比均匀磁芯还要低。虽然存储能量的减少不是特别明显,但是这种几何形状所带来的可能的重量减轻和机械强度的提高是非常可观的。此处显示出,对于核/幔结构,寄生TM 1 模式的串联谐振远离最小TE 1 模式能量的点,因此,最佳设计不会受到寄生TM 1 模式的影响。此外,提出了一种确定非均质岩心的最佳渗透率和地幔厚度的方法。

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