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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Broadband Substrate Integrated Waveguide 4$,times,$4 Nolen Matrix Based on Coupler Delay Compensation
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Broadband Substrate Integrated Waveguide 4$,times,$4 Nolen Matrix Based on Coupler Delay Compensation

机译:基于耦合器延迟补偿的宽带基片集成波导4 <公式> = inline“> $,times,$ 4 Nolen矩阵

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摘要

A broadband Nolen matrix in substrate integrated waveguide (SIW) technology is proposed and studied in this paper. Being serial feeding networks, Nolen matrices usually introduce significant phase dispersion in their standard form, thus limiting effective bandwidth. In this work, broadband frequency operation is achieved with adequate coupler delay compensation, resulting in a more “parallel” matrix topology. Consequently, $H$-plane couplers with continuous aperture are preferred in the proposed design as opposed to the cross-couplers previously used in the “serial” configuration. The SIW couplers and phase shifters of a balanced amplitude 4$,times,$ 4 Nolen matrix are designed at 77 GHz for radar applications. The resulting matrix that combines these elementary building blocks is fabricated and measured, and measured characteristics are in good agreement with theoretical and simulated predictions. This first design achieves excellent results over a 11.7% frequency bandwidth centered at 77 GHz. This modified Nolen matrix combines advantages of standard Nolen and Butler matrices and may be used as a building block for generalized orthogonal matrices.
机译:提出并研究了宽带宽带衬底基体集成波导(SIW)技术。作为串行馈电网络,诺伦矩阵通常会以其标准形式引入明显的相位色散,从而限制了有效带宽。在这项工作中,宽带频率操作可通过适当的耦合器延迟补偿来实现,从而获得更“平行”的矩阵拓扑。因此,与先前使用的交叉耦合器相比,在本设计中首选具有连续孔径的 $ H $ -平面耦合器在“串行”配置中。平衡振幅为4 $,times,$

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