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Improved low-frequency performance of pyramid-cone absorbers for application in semi-anechoic chambers

机译:改进了金字塔锥吸收器的低频性能,用于在半透筒腔室中应用

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摘要

A mathematical model, developed by the authors to describe the low-frequency reflection properties of arrays of pyramid-cone absorbers, is used to improve the design of these cones in the range of 30 to 300 MHz. The model shows that at frequencies such that the transverse spacing of the cones is small compared to a wavelength, a reflecting wave is not influenced by the individual cones, but rather the wave is acted upon as if only a one-dimensionally layered, anisotropic equivalent medium exists, whose parameters depend on the geometry and electrical composition of the cones. It is thus possible using elementary means to calculate the reflection coefficient of an arbitrarily polarized and incident plane wave from an array of these cones and hence to assess their performance in an anechoic chamber. Results of the application of this design to semianechoic measurement chambers are presented. These are found to provide closer correlation to the site attenuation curves for an ideal open-field test site.
机译:的数学模型,通过作者开发来描述金字塔锥体吸收剂的阵列的低频率的反射特性,是用来改善这些锥体的设计在30至300兆赫的范围内。该模型表明,在频率的情况下,锥体的横向间隔与波长相比,反射波不受各个锥体的影响,而是在仅仅是一维分层,各向异性的各向异性等同物时作用波的反射波。存在介质,其参数取决于锥体的几何形状和电气组成。因此,使用基本意味着可以从这些锥体的阵列计算任意偏振和入射平面波的反射系数,从而评估它们在化学腔室中的性能。提出了这种设计对半晶体测量室的应用结果。这些被发现与理想的开放式测试站点的站点衰减曲线更接近相关性。

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