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Design and fabrication of composite smart structures for communication, using structural resonance of radiated field

机译:利用辐射场的结构共振设计和制造用于通信的复合智能结构

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In this paper we report the development of a loadbearing outer surface that enhanced antenna performances, and is termed CSS for 'composite smart structure'. A CSS is a multilayer composite sandwich structure in which antenna layers are embedded. Two types of CSS are designed. One uses a direct-feeding stacked patch antenna and the other an aperture-coupled patch antenna for electrical performances. The design procedure is presented including structure design, material selection and design of antenna elements in order to achieve high electrical and structural performances. Antenna design is processed at a central frequency of 12.2 GHz and a bandwidth over 1 GHz. Honeycomb thickness under the outer facesheet is selected for the most efficient electrical performances. A high gain can be obtained by placing an outer facesheet at a resonance position of the radiated field, which is half the wavelength distance from the spot which the radiation originates from. Measured electrical performances show that CSSs have a wide bandwidth over 10% and a higher gain than the antennas before they are embedded, and no doubt they have excellent structural performances due to sandwich effects by composites and honeycomb cores. With the CSS design concept, antenna efficiency can be improved with structurally effective materials of high electrical loss. The CSS concept can be extended to give a useful guide for manufacturers of structural body panels as well as antenna designers, promising innovative future communication technology.
机译:在本文中,我们报告了可增强天线性能的承重外表面的发展,该表面被称为“复合智能结构”的CSS。 CSS是一种多层复合夹层结构,其中嵌入了天线层。设计了两种类型的CSS。一种使用直接馈电的堆叠式贴片天线,另一种使用孔径耦合的贴片天线来实现电性能。提出了设计过程,包括结构设计,材料选择和天线元件设计,以实现较高的电气和结构性能。天线设计的处理中心频率为12.2 GHz,带宽超过1 GHz。选择外部面板下方的蜂窝厚度以实现最有效的电气性能。通过将外面板放置在辐射场的共振位置可以获得高增益,该共振面是距辐射起源点的波长距离的一半。测得的电气性能表明,CSS嵌入之前比天线具有10%的宽带宽和更高的增益,并且毫无疑问,由于复合材料和蜂窝芯的夹心效应,它们具有出色的结构性能。利用CSS设计概念,可以使用具有高电损耗的结构有效材料来提高天线效率。可以扩展CSS概念,为结构体面板制造商和天线设计人员提供有用的指导,并承诺创新的未来通信技术。

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