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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >A Cavity-Backed Patch Antenna With Distributed Multi-Port Feeding, Enabling Efficient Integration With Doherty Power Amplifier and Band-Pass Filter
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A Cavity-Backed Patch Antenna With Distributed Multi-Port Feeding, Enabling Efficient Integration With Doherty Power Amplifier and Band-Pass Filter

机译:具有分布式多端口送料的腔压接贴天线,实现了与Doherty功率放大器和带通滤波器的高效集成

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摘要

A joint design approach for cointegrated antenna and power amplifier (PA), employing a high-efficiency Doherty PA (DPA) architecture and including a bandpass RF filter, is proposed. This design is realized through the optimally distributed and balanced multiport feeding of the cavity-backed patch antenna element that provides the desired (unique) loading conditions for the main and auxiliary PA branches and tailored power combining. A novelty and advantage of this feeding solution is that each pair of feeding points forms a virtual common feeding center of the radiating element; as a result, the radiation pattern remains power invariant when the port excitations change. A joint optimization of the integrated antenna-DPA transmitter is carried out to enhance the overall performance and maximize the bandwidth. This optimization is demonstrated through an example design for the sub-6 GHz telecommunication applications that target high power efficiency (>50%) at the 6 dB backed-off power levels and require RF-filtering in a compact integrated design. The latter challenge leads to a nonconventional implementation, which generally does not require the filter to be inserted between the antenna and the final output stage of the PA, and can be embedded in the topology with complex-valued source/load impedance values. The results of numerical studies are supported by measurements obtained with the antenna-DPA-filter prototype system.
机译:提出了一种用于共同化天线和功率放大器(PA)的联合设计方法,采用高效Doherty PA(DPA)架构和包括带通RF滤波器。通过最佳分布和平衡的多端口馈送腔压接线环元件的最佳分布式和平衡多端口,为主要和辅助PA分支提供了所需的(唯一)的装载条件和量身定制的功率相结合来实现该设计。该进料溶液的新颖性和优点是每对供给点形成辐射元件的虚拟公共进料中心;结果,当端口激励改变时,辐射模式仍然是电力不变的。进行集成天线-DPA发射器的联合优化以提高整体性能并最大化带宽。通过针对6 dB余回电源电平的高功率效率(> 50%)的示例性设计,通过示例设计来证明这种优化,并在紧凑的集成设计中需要RF滤波。后一种挑战导致非共同实现,这通常不需要在天线和PA的最终输出级之间插入过滤器,并且可以嵌入与复值源/负载阻抗值的拓扑中。通过用天线-DPA滤波器原型系统获得的测量支持数值研究的结果。

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