Simulation of Integral Power Excited by TE11/TM01 Hybrid Modes in Conical Horn Antenna

Meng Yang, Feng Yan, Hong Jing, Yingjun Liu, Zhiwei Qi, Min Liu
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引用次数: 1

Abstract

The antenna pattern is much relative with different excited modes in the conical horn antenna. With TE11 as the main mode, the integral power calculated according to the pattern of conical horn antenna for different power ratios of TM01 (0, 2%, 5%, 10%, 20%) is simulated and analyzed in the paper. The results show that with the increase of TM01 power ratio, the gain decreases and the 3dB lobe width increases. The H pattern is still symmetric with respect to the antenna spindle, however, the E pattern whose maximum radiation direction gradually deviates from the main axis no longer presents symmetric distribution. If E pattern and H pattern is adopted separately, the integral power will be greater than or less than 100% of real radiation power when the symmetry of E pattern and H pattern is poor. In the presence of hybrid modes, the difference between the results of theoretical integration and the results of bilateral integration for asymmetric pattern can be reduced. In the case of TE11 and TM01 hybrid modes where the power ratio of TM01 is less than 10%, the difference between integral power and real radiation power is less than 3%.
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锥形喇叭天线TE11/TM01混合模式激励积分功率的仿真
圆锥喇叭天线的天线方向图与不同的激励模式有很大的关系。本文以TE11为主要模式,对TM01不同功率比(0、2%、5%、10%、20%)下,根据圆锥喇叭天线方向图计算的积分功率进行了仿真分析。结果表明,随着TM01功率比的增大,增益减小,3dB瓣宽增大。H方向图相对于天线主轴仍然是对称的,而最大辐射方向逐渐偏离主轴的E方向图不再对称分布。如果分别采用E方向图和H方向图,当E方向图和H方向图对称性较差时,积分功率将大于或小于实际辐射功率的100%。在混合模式存在的情况下,可以减小非对称模式下理论积分结果与双边积分结果之间的差异。在TE11和TM01混合模式下,TM01的功率比小于10%,积分功率与实际辐射功率的差值小于3%。
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