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  • 發布時間:2020-09-28 17:43 原文鏈接: 基于特征模理論的系統天線設計方法(七)

    圖15、寬邊饋電不同位置時電流分布與模式加權系數MWC

    從圖15可以看出:天線支節位于寬邊時,非常容易激勵出mode #2,饋電點位置最好位于中間,在此頻段只有mode #2和mode  #5,  且mode #2較mode #5大7 dB,期望!,其他饋電方式,會激勵出更多模式,造成隔離度變差。

    圖16、不同激勵組合激發出不同的模式

    從圖16可以看出:當天線1工作,存在模式1和模式5,天線2工作時,存在模式2和模式5,但由于模式5的MS值很小,所以有很好的隔離度。

    圖17、不同饋電方式下MIMO性能比較

    (CMA設計結果vs. 三種掃參優化得到的結果)

    從圖17可以看出:天線1,沒有覆蓋整個頻段,但是天線2在整個頻段匹配好,并且兩個天線之間最好隔離度;具有最好的ECC 性能(<0.1) 和>0.5 dB 的MEG;天線1和天線2分別激勵了不同的模式。

    圖18、CMA分析得到兩種激勵組合方式下的3D方向圖

    四、總結

    本文簡要介紹了特征模理論基礎,并采用商業軟件FEKO v14.0版本的CMA分析模塊對幾種簡單的天線形式進行特征模分析,得到了豐富的模式特征參數,并展開分析,便于讓大家清楚地了解CMA技術的應用。CMA方法廣泛應用于天線設計,也同樣應用于天線布局[13][14]、電磁兼容以及目標隱身等領域。

    作者:焦金龍,澳汰爾工程軟件(上海)有限公司

    參考文獻

    [1] Martin Vogel, Gopinath Gampala, Dani?l Ludick, Ulrich Jakobus, and C. J. Reddy,“Characteristic Mode Analysis: Putting Physics back into Simulation,”IEEE 310 Antennas and Propagation Magazine, Vol. 57, No. 2, April 2015
    [2] Altair Engineering Inc., “FEKO Suite 14.0,” Troy, MI, www.altairhyperworks.com/product/FEKO.
    [3] 何其洪張廷恒, “應用FEKO特征模分析功能設計一種共形天線,” ATC 2015 Altair 用戶大會.
    [4] R. J. Garbacz, “A Generalized Expansion for Radiated and Scattered Fields,” Ph.D. dissertation, Ohio State University, Columbus, 1968.
    [5] R. F. Harrington and J. R. Mautz, “Theory of Characteristic Modes forConducting Bodies,” IEEE Trans. Antennas Propagat., vol. AP-19, no. 5, pp. 622-628, Sept. 1971.
    [6] R. F. Harrington and J. R. Mautz, “Computation of Characteristic Modes forConducting Bodies,” IEEE Trans. Antennas Propagat., vol. AP-19, no. 5, pp. 629-639, Sept. 1971.
    [7] R. F. Harrington, J. R. Mautz, and Y. Chang, “Characteristic Modes for Dielectricand Magnetic Bodies,” IEEE Trans. Antennas Propagat., vol. AP-20, pp. 194-198,March 1972.
    [8] Bryan D. Raines and Roberto G. Rojas,” Wideband Characteristic Mode Tracking,”IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, VOL. 60, NO. 7, JULY 2012.
    [9] Eugen Safin and Dirk Manteuffel,“Advanced Eigenvalue Tracking of Characteristic Modes,”IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, VOL. 64, NO. 7, JULY 2016
    [10] Peter Futter, “Changing Design with Characteristic Mode Analysis,” MICROWAVE JOURNAL OCTOBER 2016
    [11] Characteristic Modes and Antenna Bandwidth; Rahola, et al. APSURSI 2014
    [12] P. Futter et al., “Simulation Approach for MIMO Antenna Diversity Strategies,”EDICON China 2015.
    [13] Martin Vogel, Gopinath Gampala, Dani?l Ludick, Ulrich Jakobus, and C. J. Reddy,“Characteristic Mode Analysis: Putting Physics back into Simulation,”IEEE 310 Antennas and Propagation Magazine, Vol. 57, No. 2, April 2015
    [14] Ting-Yen Shih and Nader Behdad  “BANDWIDTH ENHANCEMENT OF XPEDITIONARYFIGHTING-VEHICLE-MOUNTED ANTENNAS USING THE CHARACTERISTIC MODE THEORY,”Department of Electrical and Computer Engineering University of Wisconsin-Madison, Madison


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