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Advances in Filter Miniaturization and Design/Analysis of RF MEMS Tunable Filters

机译:滤波器小型化和RF MEMS可调滤波器的设计/分析进展

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摘要

The main purpose of this dissertation was to address key issues in the design and analysis of RF/microwave filters for wireless applications. Since RF/microwave filters are one of the bulkiest parts of communication systems, their miniaturization is one of the most important technological challenges for the development of compacttransceivers. In this work, novel miniaturization techniques were investigated for single-band, dual-band, ultra-wideband and tunable bandpass filters. In single-band filters, the use of cross-shaped fractals in half-mode substrate-integrated-waveguide bandpass filters resulted in a 37 percent size reduction. A compact bandpass filter that occupies an area of 0.315 mm2 is implemented in 90-nm CMOS technology for 20 GHz applications. For dual-band filters, using half-mode substrate-integrated-waveguides resulted in a filter that is six times smaller than its full-mode counterpart. For ultra-wideband filters, using slow-wave capacitively-loaded coplanar-waveguides resulted in a filter with improved stopband performance and frequency notch, while being 25 percent smaller in size.A major part of this work also dealt with the concept of 'hybrid' RF MEMS tunable filters where packaged, off-the-shelf RF MEMS switches were used to implement high-performance tunable filters using substrate-integrated-waveguide technology. These 'hybrid' filters are very easily fabricated compared to current state-of-the-art RF MEMS tunable filters because they do not require a clean-room facility. Both the full-mode and half-mode substrate-integrated waveguide tunable filters reported in this work have the best Q-factors (93 - 132 and 75 - 140, respectively) compared to any 'hybrid' RF MEMS tunable filter reported in current literature. Also, the half-mode substrate-integrated waveguide tunable filter is 2.5 times smaller than its full-mode counterpart while having similar performance.This dissertation also presented detailed analytical and simulation-based studies of nonlinear noise phenomena induced by Brownian motion in all-pole RF MEMS tunable filters. Two independent mathematical methods are proposed to calculate phase noise in RF MEMS tunable filters: (1) pole-perturbation approach, and (2) admittance-approach. These methods are compared to each other and to harmonic balance noise simulations using the CAD-model of the RF MEMS switch. To account for the switch nonlinearity in the mathematical methods, a nonlinear nodal analysis technique for tunable filters is also presented. In summary, it is shown that output signal-to-noise ratio degradation due to Brownian motion is maximum for low fractional bandwidth, high order and high quality factor RF MEMS tunable filters.Finally, a self-sustained microwave platform to detect the dielectric constant of organic liquids is presented in this dissertation. The main idea is to use a voltage-controlled negative-resistance oscillator whose frequency of oscillation varies according to the organic liquid under test. To make the system self-sustained, the oscillator is embedded in a frequency synthesizer system, which is then digitally interfaced to a computer for calculation of dielectric constant. Such a system has potential uses in a variety of applications in medicine, agriculture and pharmaceuticals.
机译:本文的主要目的是解决无线应用中射频/微波滤波器设计和分析中的关键问题。由于射频/微波滤波器是通信系统中体积最大的部分之一,因此使其小型化是紧凑型收发器发展中最重要的技术挑战之一。在这项工作中,针对单频带,双频带,超宽带和可调带通滤波器研究了新颖的小型化技术。在单带滤波器中,在半模基片集成波导带通滤波器中使用十字形分形可将尺寸减小37%。用于20 GHz应用的90 nm CMOS技术实现了占地0.315 mm2的紧凑型带通滤波器。对于双频滤波器,使用半模基片集成波导所得到的滤波器比其全模滤波器小六倍。对于超宽带滤波器,使用慢波电容性负载共面波导可以使滤波器的阻带性能和频率陷波得到改善,同时尺寸减小25%。这项工作的主要部分还涉及``混合''概念。 RF MEMS可调滤波器,其中已封装的现成RF MEMS开关用于使用衬底集成波导技术实现高性能的可调滤波器。与目前最先进的RF MEMS可调滤波器相比,这些“混合”滤波器非常容易制造,因为它们不需要洁净室设备。与当前文献中报道的任何“混合” RF MEMS可调滤波器相比,这项工作中报告的全模和半模集成衬底波导可调滤波器均具有最佳Q因子(分别为93-132和75-140)。 。同时,半模基片集成波导可调滤波器比全模滤波器小2.5倍,同时具有相似的性能。 RF MEMS可调滤波器。提出了两种独立的数学方法来计算RF MEMS可调滤波器中的相位噪声:(1)极点摄动法和(2)导纳法。这些方法相互比较,并且使用RF MEMS开关的CAD模型与谐波平衡噪声仿真进行比较。为了解决数学方法中的开关非线性问题,还提出了可调谐滤波器的非线性节点分析技术。综上所述,对于低分数带宽,高阶和高品质因数的RF MEMS可调滤波器,由布朗运动引起的输出信噪比降级最大。最后,一个用于检测介电常数的自持微波平台本文介绍了一些有机液体。主要思想是使用压控负电阻振荡器,其振荡频率根据被测有机液体的不同而不同。为了使系统自持,将振荡器嵌入频率合成器系统中,然后将其数字连接到计算机以计算介电常数。这样的系统在医学,农业和药物的各种应用中具有潜在的用途。

著录项

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    Sekar Vikram;

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  • 年度 2011
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  • 正文语种 en_US
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