基于模拟退火的HFSWR宽带负载接收天线优化设计

Gao Huotao, Li Jie, Zheng Xia, Wei Zhongwei
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引用次数: 1

摘要

利用海岸高频表面波雷达(HFSWR)进行船舶、飞机和冰山的远程探测,或利用海岸高频表面波雷达对海洋环境进行遥感,如何在低频频段减小发射和接收天线的尺寸是其面临的主要挑战之一。本文根据接收单极增益和驻波比均能满足工程设计要求的HFSWR工作频带,主要描述了利用模拟退火算法(SAA)对加载电路参数、负载沿天线的位置以及匹配网络参数进行优化,使工作频带的驻波比小于3的过程。算例表明,SAA是设计高频宽带负载天线的有效方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal design of broadband loaded receiving antenna for HFSWR using simulated annealing
One of the major challenges in using coast-based high frequency surface wave radar (HFSWR) is, for the purpose of the long-range detection of ships and aircraft as well as icebergs, or the remote sensing of the ocean environment using the coast-based HFSWR, how the size of transmitting and receiving antennas are reduced at lower end of the HF band. In this paper, according to the operating frequency bandwidth for a HFSWR, where both the gain and the voltage standing wave ratio (VSWR) of a receiving monopole can satisfy the requirement of engineering design, it mainly describes the process in which the loading circuit parameters, locations of the loads along the antenna, as well as matching network parameters are optimized by the simulated annealing algorithm (SAA) to achieve a VSWR less than 3 in the operating frequency bandwidth. Several examples antennas illustrate that the SAA is an effective method for designing HF broadband loaded antennas.
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