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Design of load-bearing antenna structures by embedding technology of microstrip antenna in composite sandwich structure

机译:微带天线嵌入复合夹层结构中的承载天线结构设计

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摘要

Electrically and structurally effective antenna structure is developed for the next generation of surface technology for communication, in which the structural surface itself becomes an antenna. The basic design concept is a sandwich structure composed of composite laminates and Nomex honeycomb, with which microstrip antenna is integrated. Composite materials with high electrical loss must not reduce antenna efficiency. Stacked-patch microstrip antenna is preferred for wideband performance. An open condition that defines a position of outer facesheet is exploited in order to allow an antenna into the sandwich structure without loss of antenna performances. Measured electrical performances of fabricated structure show that the gain is more improved than original antenna and the bandwidth is as wide as specified in our requirements. With the open condition, wideband antenna can be integrated with mechanical structures without reducing any electrical performances, as confirmed experimentally here.
机译:在电气和结构上有效的天线结构被开发用于下一代用于通信的表面技术,其中结构表面本身成为天线。基本设计概念是由复合材料层压板和Nomex蜂窝组成的三明治结构,并与微带天线集成在一起。具有高电损耗的复合材料一定不能降低天线效率。堆叠贴片微带天线是宽带性能的首选。为了限定天线进入夹层结构而不会损失天线性能,利用了定义外部面板的位置的开放条件。所测量的制造结构的电气性能表明,增益比原始天线得到了更大的改善,带宽达到了我们的要求。在开放条件下,宽带天线可以与机械结构集成在一起,而不会降低任何电气性能,如此处实验所证实。

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