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Flangeless Waveguide Connection Based on Gap Waveguide Technology

机译:基于间隙波导技术的无法兰波导连接

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To reduce the size of traditional waveguide flange, a solution of pluggable flangeless waveguide connection is proposed. Artificial magnetic conductor (AMC) structure is designed surrounding the outer surface of a size-reduced end of a waveguide, called part-A. Another waveguide with stepped transition to an enlarged end is part-B, the inner surface of the enlarged end works as PEC surface. When Part-A is inserted into part-B, a tight flangeless waveguide connection is achieved under proper size conditions. Tiny air gap exists between the PEC and AMC surface, the electromagnetic leakage from the air gap is prevented by band gap of the EBG structure formed by PEC and AMC surface. A Ku-band prototype of the flangeless connection is designed and manufactured, the measured insertion and return loss are better than 0.06dB and 20dB respectively over 10GHz to 15GHz. The sectional size decreases by more than 70% comparing with traditional waveguide flange.
机译:为了减小传统波导法兰的尺寸,提出了一种可插拔的无法兰波导连接的解决方案。人造磁导体(AMC)结构被设计为围绕波导的尺寸减小的一端(称为A部分)的外表面。另一个具有逐步过渡到扩大端的波导是B部分,扩大端的内表面充当PEC表面。当将A部分插入B部分时,可以在适当的尺寸条件下实现紧密的无法兰波导连接。 PEC和AMC表面之间存在微小的气隙,由PEC和AMC表面形成的EBG结构的带隙可防止从气隙泄漏电磁。设计和制造了无法兰连接的Ku波段原型,在10GHz至15GHz范围内测得的插入损耗和回波损耗分别优于0.06dB和20dB。与传统的波导法兰相比,截面尺寸减小了70%以上。

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