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Active antenna arrays for power combining and communications.

机译:有源天线阵列,用于功率组合和通信。

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摘要

Traditional systems with large numbers of solid-state devices suffer from a power-combining network loss, which grows geometrically with the number of amplifiers. A fundamental goal of spatial power combining is the use of free space as a low-loss, power-combining medium to increase the power-combining efficiency of the system.; An active-antenna array is an array of unit cells, each with an amplifying solid-state device and radiating element. Radiation from all unit cells combine coherently in free space with losses that are less than a traditional feed network for a large number of elements.; The regular array of identical unit cells of an active-antenna amplifier lends itself to traditional monolithic uniplanar fabrication. Potential applications for active-antenna arrays include analog front ends for guided munitions, collision-avoidance systems, and communication links.; This thesis presents results on two active-antenna array projects. The first project presents two low-cost Ka-band power amplifier arrays fabricated on aluminum nitride. The second presents a K-band lensing full-duplex transmit-receive array.; The two Ka-band amplifiers of identical RF design are compared. The focus of the discussion are thermal constraints on the selection of substrates and the effect on antenna design, efficiency, array layout, and bias-line configuration. Results for the Ka-band arrays are 89 W EIRP and 316 mW of output power for the first array and 145 W EIRP and 513 mW of output power at 31 GHz for the second.; The K-band array is the demonstration of a lensing active-antenna array used for full-duplex transmit-receive operation. This array employs several design enhancements over the previous array, such as increased antenna isolation, simplified fabrication requirements, and a more efficient feed. The focus of the research is on the development of full-duplex transmit-receive operation, the use of design techniques to reduce complexity, and the integration of a lens feed to reduce feed loss. The array transmits and receives at 19 and 21 GHz. Orthogonal antenna polarization and bandpass circuitry provide a simulated isolation of 50 dB at 19 GHz and 42 dB at 21 GHz between transmit and receive channels. The measured gains of the active array are 3 dB and 8.2 dB above passive for transmit and receive modes respectively.
机译:具有大量固态设备的传统系统会遭受功率合并的网络损耗,功率损耗会随着放大器数量的增加而呈几何级数增长。空间功率合并的基本目标是使用自由空间作为低损耗的功率合并介质,以提高系统的功率合并效率。有源天线阵列是单位单元的阵列,每个单位单元都有一个放大的固态设备和一个辐射元件。所有单位单元的辐射在自由空间内相干地结合在一起,其损耗小于传统的馈电网络,可吸收大量元素。有源天线放大器的相同单位单元的规则阵列使其适用于传统的单片单平面制造。有源天线阵列的潜在应用包括制导弹药的模拟前端,避免碰撞系统和通信链路。本文介绍了两个有源天线阵列项目的结果。第一个项目展示了两个在氮化铝上制造的低成本 Ka 功率放大器阵列。第二个展示了一个 K 波段透镜全双工发送-接收阵列。比较了两个具有相同射频设计的 Ka 放大器。讨论的重点是对基板选择的热约束以及对天线设计,效率,阵列布局和偏置线配置的影响。第一个阵列的 阵列的结果是89 W EIRP和316 mW,第二个阵列在31 GHz下的结果是145 W EIRP和513 mW。 K 波段阵列是用于全双工发射-接收操作的透镜有源天线阵列的演示。该阵列在以前的阵列上进行了多项设计改进,例如增加了天线隔离度,简化了制造要求并提高了馈送效率。研究的重点是全双工收发操作的发展,设计技术的使用以降低复杂性,以及透镜进给的集成以减少进给损耗。该阵列以19和21 GHz的频率发送和接收。正交天线极化和带通电路在发射和接收通道之间提供了19 GHz时50 dB的模拟隔离和21 GHz时42 dB的模拟隔离。对于发射和接收模式,有源阵列的测量增益分别比无源高3 dB和8.2 dB。

著录项

  • 作者

    Forman, Michael Alan.;

  • 作者单位

    University of Colorado at Boulder.;

  • 授予单位 University of Colorado at Boulder.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 154 p.
  • 总页数 154
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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