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High frequence structure simulator simulation and performance analysis for nearfield and wide band electric coupling antenna

Yang Yong Sun Wei-Qiang Zhuang Qian-Wei Feng Tao Xu Sheng-Yong Xie Si-Shen

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High frequence structure simulator simulation and performance analysis for nearfield and wide band electric coupling antenna

Yang Yong, Sun Wei-Qiang, Zhuang Qian-Wei, Feng Tao, Xu Sheng-Yong, Xie Si-Shen
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  • Electric field coupling antenna is a new type of antenna that can be used in high speed wireless communication at a very short distance. It is the working antenna for TransferjetTM technology promoted by Sony Corporation. In this paper, we use the high frequency structure simulator to design a typical antenna of this kind with parametric structures. We analyze the influences of the length (Ls) and width (Ws) of the short stub, the height (H) of coupling electrode on the performance of the antenna corresponding to the centre frequency and bandwidth. We also analyze the effects of the distance (d) and angle () between two antennas and the size of coupling electrode (Lc) on transmission loss. Finally, we design an antenna satisfying the technology standards of TransferjetTM, thus demonstrate its working performance.
    • Funds: Project supported by the 7th China-Singapore Joint Research Project of China's Ministry of Science and Technology (Grant No. 2011DFA51450) and the National Natural Science Foundation of China (Grant No. 11074010).
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    Jiang S F, Kong F M, Li K, Gao H 2011 Acta Phys. Sin. 60 045203 (in Chinese) [蒋双凤, 孔凡敏, 李康, 高晖 2011 物理学报 60 045203]

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    Wang J H 2000 Acta Phys. Sin. 49 1696 (in Chinese) [王均宏 2000 物理学报 49 1696]

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    Han Z F, Wang J H 2005 Acta Phys. Sin. 54 644 (in Chinese) [韩增富, 王均宏 2005 物理学报 54 644]

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    Kraus J D, Marhefka R J 2011 Antennas: For All Applications (vol. 1) (Beijing: Publishing House of Electronic Industry) p29 (in Chinese) [约翰 克劳斯, 罗兰 马赫夫克 2011 天线(上册)(北京:电子工业出版社) 第29页]

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  • [1]

    Washiro T, Kuroda S, Tanaka K 2007 Proceedings of Asia-Pacific Microwave Conference Proceedings Bangkok, Thailand, December 11-14, 2007

    [2]

    Washiro T 2009 U.S. Patent 2009/0231227 A1 [2009-09-17]

    [3]
    [4]
    [5]
    [6]

    Washiro T 2009 Chinses Patent 20081061885.8 [2009-04-22] (in Chinese) [和城贤典 2009 中国专利 20081061885.8 [2009-04-22] ]

    [7]

    Rao K V S, Nikitin P V, Lam S F 2005 IEEE Trans. Antennas Propag. 53 3870

    [8]
    [9]

    Lin C C, Kan Y C, Kuo L C, Chuang H R 2005 IEEE Microwave Wireless Compon. Lett. 15 10

    [10]
    [11]

    Jiang S F, Kong F M, Li K, Gao H 2011 Acta Phys. Sin. 60 045203 (in Chinese) [蒋双凤, 孔凡敏, 李康, 高晖 2011 物理学报 60 045203]

    [12]
    [13]

    Wang J H 2000 Acta Phys. Sin. 49 1696 (in Chinese) [王均宏 2000 物理学报 49 1696]

    [14]
    [15]

    Han Z F, Wang J H 2005 Acta Phys. Sin. 54 644 (in Chinese) [韩增富, 王均宏 2005 物理学报 54 644]

    [16]
    [17]

    Kraus J D, Marhefka R J 2011 Antennas: For All Applications (vol. 1) (Beijing: Publishing House of Electronic Industry) p29 (in Chinese) [约翰 克劳斯, 罗兰 马赫夫克 2011 天线(上册)(北京:电子工业出版社) 第29页]

    [18]
    [19]
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Publishing process
  • Received Date:  16 April 2012
  • Accepted Date:  24 April 2012
  • Published Online:  05 October 2012

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