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Contributions to the theory, design and optimization of microwave bandpass filters.

机译:为微波带通滤波器的理论,设计和优化做出了贡献。

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摘要

Bandpass microwave filters are often modeled as a set of coupled discrete and localized resonators. This model is adequate in the narrow-band case. It, however, fails to describe accurately compact structures where stray couplings can be strong.;In order to relate the global-eigen modes model to the conventional model, the issue of representation of microwave filters is investigated in detail. It is shown that a microwave filter can be represented by an infinite number of similar coupling matrices by using different modes as basis. According to this new view, a similarity transformation in microwave coupled resonator filters is interpreted as a change of basis. Two circuits that are related by a similarity transformation represent the same filter structure by using different sets of modes as basis.;These conclusions were exploited in establishing a design theory for filters with dual-mode cavities. The new theory leads to direct and accurate design techniques that need no, or minimal, optimization. No tuning is used in the CAD steps. Tuning may only be required to account for manufacturing tolerances. A new tuning configuration is described and validated by computer simulation.;A novel dual-mode filter with improved quality factor and reduced sensitivity is developed and designed within the same approach. The filter is fabricated and measured and excellent results are achieved. The same design methodology was used to introduce a new class of dual-mode dual-band microwave filters with improved sensitivity. It is also shown that canonical dual-mode filters can be designed within the same view with minimal local optimization of the input cavity.;To address this problem, a new view is proposed in this thesis. Instead of basing the model on localized discrete resonances, we start by constructing a model that is based on the global resonances of the structure. These are the resonances that the ports see and emerge when the entire structure is treated as a single unit. The resulting circuit, the transversal circuit, is universal. It is valid for any coupled resonator filter. The circuit is used in optimization of compact and ultra wideband suspended stripline filters and excellent results were obtained.
机译:带通微波滤波器通常被建模为一组耦合的离散和局部谐振器。该模型在窄带情况下就足够了。但是,它无法准确描述杂散耦合可能很强的紧凑结构。为了使全局本征模式模型与常规模型相关联,我们对微波滤波器的表示问题进行了详细研究。结果表明,通过使用不同的模式作为基础,微波滤波器可以由无数个相似的耦合矩阵表示。根据这种新观点,将微波耦合谐振器滤波器中的相似性变换解释为基础的改变。通过相似性变换相关的两个电路以不同的模式集为基础来表示相同的滤波器结构。这些结论被用于建立双模腔滤波器的设计理论。新理论导致了直接且准确的设计技术,而无需或只需进行最少的优化。 CAD步骤中不使用任何调整。可能仅需要进行调整以考虑制造公差。描述了一种新的调谐配置,并通过计算机仿真对其进行了验证。;在相同的方法内,开发并设计了一种具有改进的品质因数和降低的灵敏度的新型双模滤波器。过滤器的制造和测量结果非常出色。使用相同的设计方法来引入具有更高灵敏度的新型双模双频带微波滤波器。还表明可以在同一视图内设计规范的双模滤波器,而对输入腔的局部优化最少。为了解决这个问题,本文提出了一种新的视图。代替将模型基于局部离散共振,我们从构建基于结构整体共振的模型开始。这些是将整个结构视为一个单元时端口看到并出现的共振。产生的电路,即横向电路,是通用的。对于任何耦合的谐振器滤波器均有效。该电路用于优化紧凑型和超宽带悬挂带状线滤波器,并获得了出色的结果。

著录项

  • 作者

    Bekheit, Maged.;

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 341 p.
  • 总页数 341
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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