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Novel technologies and techniques for low-cost phased arrays and scanning antennas

机译:低成本相控阵和扫描天线的新技术

摘要

This dissertation introduces new technologies and techniques for low-cost phased arrays and scanning antennas. Special emphasis is placed on new approaches for low-cost millimeter-wave beam control. Several topics are covered. A novel reconfigurable grating antenna is presented for low-cost millimeter-wave beam steering. The versatility of the approach is proven by adapting the design to dual-beam and circular-polarized operation. In addition, a simple and accurate procedure is developed for analyzing these antennas. Designs are presented for low-cost microwave/millimeter-wave phased-array transceivers with extremely broad bandwidth. The target applications for these systems are mobile satellite communications and ultra-wideband radar. Monolithic PIN diodes are a useful technology, especially suited for building miniaturized control components in microwave and millimeter-wave phased arrays. This dissertation demonstrates a new strategy for extracting bias-dependent small-signal models for monolithic PIN diodes. The space solar-power satellite (SPS) is a visionary plan that involves beaming electrical power from outer space to the earth using a high-power microwave beam. Such a system must have retrodirective control so that the high-power beam always points on target. This dissertation presents a new phased-array architecture for the SPS system that could considerably reduce its overall cost and complexity. In short, this dissertation presents technologies and techniques that reduce the cost of beam steering at microwave and millimeter-wave frequencies. The results of this work should have a far-ranging impact on the future of wireless systems.
机译:本文介绍了低成本相控阵和扫描天线的新技术。特别强调用于低成本毫米波束控制的新方法。涵盖了几个主题。提出了一种新颖的可重构光栅天线,用于低成本毫米波波束转向。通过使设计适应双光束和圆偏振操作,证明了该方法的多功能性。另外,开发了一种简单而准确的程序来分析这些天线。提出了针对具有极宽带宽的低成本微波/毫米波相控阵收发器的设计。这些系统的目标应用是移动卫星通信和超宽带雷达。单片PIN二极管是一项有用的技术,特别适合于在微波和毫米波相控阵中构建小型控制组件。本文提出了一种新的策略,用于提取单片PIN二极管偏置相关的小信号模型。太空太阳能卫星(SPS)是一项具有远见的计划,其中涉及使用大功率微波束将电力从外层空间发射到地球。这种系统必须具有逆向控制,以使高功率光束始终指向目标。本文提出了一种新的SPS系统相控阵架构,可以大大降低其总体成本和复杂性。简而言之,本文提出了降低微波和毫米波频率光束控制成本的技术。这项工作的结果将对无线系统的未来产生深远的影响。

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