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Cylindrical-rectangular patch on fiber-enhanced composite ground plane

机译:纤维增强复合接地平面上的圆柱矩形贴片

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Patch resonators flush-mounted on cylindrical structures such as space vehicles, missiles, airplanes have been used as antenna elements. Composite materials have been widely used in modern aircraft and vehicle surface designs to reduce weight or radar cross section. Take for example, a graphite/epoxy composite is made of several laminae of epoxy resin with conductive graphite fibers embedded in specific directions. The fiber spacing in each lamina is much smaller than a wavelength, hence each lamina can be modeled as an anisotropic layer with a conductivity tensor. Layers of different fiber orientations are stacked to enhance the mechanical strength. Planar laminates can be wrapped to form a cylindrical structure. Conventionally, the ground plane of a resonator is modeled as a perfect electric conductor. If a patch resonator is built on composite surfaces, the resonance properties will be different from those obtained by the perfect conductor assumption.
机译:齐平安装在圆柱形结构(例如航天器,导弹,飞机)上的贴片谐振器已用作天线元件。复合材料已广泛用于现代飞机和车辆表面设计中,以减轻重量或减少雷达横截面。例如,石墨/环氧树脂复合材料由几层环氧树脂制成,并在特定方向上嵌入了导电石墨纤维。每个薄片中的纤维间距远小于波长,因此可以将每个薄片建模为具有电导率张量的各向异性层。堆叠不同纤维取向的层以增强机械强度。平面层压板可被包裹以形成圆柱形结构。通常,将谐振器的接地平面建模为理想的电导体。如果将贴片谐振器构建在复合表面上,则其谐振特性将不同于通过理想导体假设获得的谐振特性。

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