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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Millimeter-Wave Transition From Waveguide to Two Microstrip Lines Using Rectangular Patch Element
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Millimeter-Wave Transition From Waveguide to Two Microstrip Lines Using Rectangular Patch Element

机译:使用矩形跳线元件从波导到两条微带线的毫米波过渡

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A millimeter-wave transition from a waveguide to two microstrip lines and the design methodology are proposed. A rectangular patch element in a short-terminated waveguide is analyzed by the cavity model of a patch antenna and the dyadic Green''s function of the waveguide. The analysis points out that the rectangular patch element has an optimum width for wideband, which only has the function of the broad wall width of the waveguide. The transition also works as a divider. A numerical investigation of a transition having two microstrip lines validates the analytical model in terms of wideband, and indicates that the distance between the two microstrip lines has an optimum length for suppressing higher order modes. A prototype transition exhibits an insertion loss of 0.5 dB from 76 to 77 GHz, and a bandwidth of 6.9% (5.29 GHz) for the reflection coefficient below -15 dB for the waveguide port
机译:提出了从波导到两条微带线的毫米波过渡及其设计方法。通过贴片天线的腔模型和波导的二进格林函数来分析短端波导中的矩形贴片元件。分析指出,矩形贴片元件具有最佳的宽带宽度,仅具有波导的宽壁宽度的功能。过渡也可以用作分隔线。对具有两条微带线的跃迁进行的数值研究验证了宽带分析模型的有效性,并表明两条微带线之间的距离具有抑制高阶模态的最佳长度。原型过渡在76至77 GHz范围内表现出0.5 dB的插入损耗,对于波导端口低于-15 dB的反射系数,带宽为6.9%(5.29 GHz)

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