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A Transmission-Line Model for Wave Excitation of a Porous Conducting Sphere

机译:多孔导电球体的波激励的传输线模型

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摘要

A wire mesh conformed to a spherical surface forms a spherical polyhedron that has unique resonator and scattering properties for electromagnetic (EM) waves. Excitation of the spherical polyhedron by an incident plane wave at specified resonant frequencies yields large internal electric fields. Narrowband enhancements in the backscatter radar cross section are found at these same frequencies. These effects are explained with a model where the mesh is treated as an inductive frequency-selective surface that is used to match a shorted-line resonator attached to a transmission line. With this transmission-line model, the impedance of the inductive surface is shown to be an addition to the expression for the spherical harmonic series used to describe solid conducting spheres and spherical cavities. The resonant modes for the internal and external electric fields of the porous sphere are found with this formulation. The surface mesh is used in the low-frequency limit, where the EM wavelength is much larger than the polygon's holes in the mesh. The impedance (inductance and resistance) of the mesh are adjusted by varying the radii of the edges of the polygons and the conductivity of the edge material. Applications of the spherical porous conducting resonator (SPCR) include glow plasma discharges, measurements of dielectric constants of gases, and frequency-selective radar targets.
机译:符合球形表面的丝网形成球形多面体,该球形多面体具有独特的谐振器和电磁(EM)波散射特性。在规定的共振频率下,入射平面波对球形多面体的激发会产生较大的内部电场。在这些相同的频率处发现了后向散射雷达横截面中的窄带增强。用模型解释这些效果,其中将网眼视为感应频率选择表面,该表面用于匹配连接到传输线的短路谐振器。在此传输线模型中,电感表面的阻抗显示为球形谐波序列表达式的补充,该表达式用于描述固体导电球体和球形空腔。用这种公式可以发现多孔球内部和外部电场的共振模式。表面网格用于低频极限,其中EM波长远大于网格中多边形的孔。通过改变多边形边缘的半径和边缘材料的电导率可以调整网格的阻抗(电感和电阻)。球形多孔导电谐振器(SPCR)的应用包括辉光等离子体放电,气体介电常数的测量以及频率选择性雷达目标。

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