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Thin EM Wave Absorber Metasurface Based on Artificial Magnetic Conductor

机译:基于人工磁导体的薄电磁波吸收体超表面

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Most of electromagnetics (EM) wave absorbers have been realized on some hard substrates. Therefore the use was limited only in the field of planar surfaces, while absorbing EM waves are required with various forms of field. In this paper, based on a principle of artificial magnetic conductor (AMC) used as a metasurface, a thin EM wave absorber composed of octagonal patch array is designed on a dielectric substrate of silicon with the relative permittivity of 5.7 and the thickness of 0.3 mm. The use of thin substrate for the absorber is necessary to have possibility and flexibility in surface of field with a non planar shape. To obtain high absorption rate of proposed wave absorber, resistive elements are incorporated into the patches and connecting to the adjacent patches. The characterization result shows that the reflection coefficient was up to 29.15 dB at the resonant frequency of 2.5 GHz for the value of resistive elements of 2100 Ω, in which this is much higher than the result without resistive elements.
机译:大多数电磁(EM)吸波器已经在某些硬质基板上实现。因此,仅在平面领域中限制了使用,而在各种形式的场中都需要吸收EM波。本文基于人工磁导体(AMC)作为超表面的原理,在相对介电常数为5.7,厚度为0.3 mm的硅介电基板上设计了由八边形贴片阵列组成的薄EM波吸收器。 。对于具有非平面形状的视场具有可能性和柔韧性,必须将薄的基板用于吸收体。为了获得所提出的吸波器的高吸收率,将电阻元件结合到贴片中并连接到相邻的贴片。表征结果表明,对于2100Ω电阻元件,在2.5 GHz谐振频率下的反射系数高达29.15 dB,这比没有电阻元件的结果高得多。

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