...
首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Power-Recycling Feedback System for Maximization of Leaky-Wave Antennas' Radiation Efficiency
【24h】

Power-Recycling Feedback System for Maximization of Leaky-Wave Antennas' Radiation Efficiency

机译:最大化漏波天线辐射效率的功率回收反馈系统

获取原文
获取原文并翻译 | 示例
           

摘要

A novel power-recycling feedback scheme is proposed for systematic maximization of the generally poor radiation efficiency of leaky-wave antennas (LWAs). In this scheme, the nonradiated power at the end of the LWA structure, instead of being lost in the terminating load, is fed back to the input of the LWA through a power-combining system, which constructively adds the input and feedback powers while ensuring perfect matching and isolation of the two signals. As a result, the radiation efficiency of the isolated (or open-loop) LWA $eta_0$ is enhanced by the system's gain factor $G_s$ $(G_s > 1)$ to the overall radiation efficiency of $eta_s=G_seta_0$, which may reach 100% for any value of $eta_0$ in a lossless system. The design of the power-recycling system depends on $eta_0$ , which typically results from a tradeoff between required directivity and restricted size. The paper derives, for a rat-race-based implementation, the exact design equations, which determine both the rat-race impedance ratios and the feedback phase conditions of the system. The build-up of the steady-state regime from the transient regime at the onset of the system is explicated by transient circuit and electromagnetic simulations. Finally, an experimental power-recycling LWA system, including naturally ohmic and dielectric losses in addition to other imperfections, is demonstrated, where the isolated antenna efficiency $eta_0$ is enhanced from 38% to 68%, corresponding to a system efficiency enhancement of $G_s=1.8$ . The proposed power-recycling feedback system applies to all LWAs and solves their fundamental efficiency problem in practical applications involving a tradeoff between relatively high directivity (higher than half-wavelength resonant antennas) and small size (smaller than open-loop LWAs or complex phased arrays).
机译:提出了一种新颖的功率回收反馈方案,以系统地最大化漏波天线(LWA)通常较差的辐射效率。在该方案中,LWA结构末端的非辐射功率通过功率合并系统反馈到LWA的输入,而不是在终端负载中损失,该功率合并系统在确保输入功率的同时,相长地增加了输入功率和反馈功率。两个信号的完美匹配和隔离。结果,隔离的(或开环的)LWA $ eta_0 $的辐射效率被系统的增益因子$ G_s $ $(G_s> 1)$增强为总辐射效率$ eta_s = G_seta_0 $,在无损系统中,对于$ eta_0 $的任何值,可能会达到100%。功率回收系统的设计取决于$ eta_0 $,这通常是由于所需的方向性和受限制的尺寸之间的折衷导致的。对于基于种族的实现,本文得出了精确的设计方程式,该方程式确定了种族阻抗比和系统的反馈相位条件。瞬态电路和电磁仿真说明了系统开始时从瞬态产生的稳态状态。最后,演示了一个实验性的功率回收LWA系统,除其他缺陷外,还包括自然的欧姆损耗和介电损耗,其中隔离天线效率$ eta_0 $从38%提高到68%,对应于系统效率$ G_s = 1.8 $。所提出的功率回收反馈系统适用于所有LWA,并解决了其在实际应用中的基本效率问题,涉及相对较高的方向性(高于半波长谐振天线)和小尺寸(小于开环LWA或复杂的相控阵)之间的权衡)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号