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A Deterministic EM Design Technique for General Waveguide Dual-Mode Bandpass Filters

机译:通用波导双模带通滤波器的确定性EM设计技术

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Circular waveguide dual-mode (CWDM) filters have been widely employed in the manifold-coupled output multiplexer (OMUX) for satellite payloads. In this paper, a deterministic electromagnetic (EM) design technique for fast and accurately computerized prototyping a general CWDM filter is presented. By introducing a generalized $K$ impedance inverter using the generalized scattering matrix of the tuning screw section, the insertion phase and the coupling of the two degenerate modes in a CWDM cavity can be determined by a most effective way. To handle the asynchronously tuned cases, the theoretical formula that relates a self-coupling to its corresponding phase offset is derived. The design technique is based on modal analysis at the center frequency and is deterministic without using optimization or curve fitting. The presented technique enables the full-wave EM design of CWDM filters as easy and accurate as designing conventional single mode waveguide filters. To validate the design technique, practical design of eight-pole symmetric and asymmetric CWDM filters have been studied theoretically and experimentally. An EM design of a complete $Ku$-band 15-channel contiguous OMUX is also demonstrated.
机译:圆波导双模(CWDM)滤波器已广泛用于卫星有效载荷的歧管耦合输出多路复用器(OMUX)中。在本文中,提出了一种确定性电磁(EM)设计技术,用于快速准确地对通用CWDM滤波器进行计算机原型设计。通过使用调谐螺杆部分的广义散射矩阵,插入相位和耦合,引入广义 $ K $ 阻抗逆变器可以通过最有效的方法确定CWDM腔中两种简并模态中的哪一种。为了处理异步调谐的情况,推导了将自耦合与其对应的相位偏移相关联的理论公式。该设计技术基于中心频率的模态分析,并且无需使用优化或曲线拟合即可确定性。所提出的技术使CWDM滤波器的全波EM设计与设计传统的单模波导滤波器一样容易和准确。为了验证设计技术,已经在理论和实验上研究了八极对称和非对称CWDM滤波器的实际设计。还演示了完整的 $ Ku $ 带15通道连续OMUX的EM设计。

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