A transparent UWB antenna with a 5 to 6 GHz band notch using two split ring resonators

被引:0
|
作者
UTM Skudai, Wireless Communication Center , Universiti Teknologi Malaysia, Johor [1 ]
81310, Malaysia
不详 [2 ]
02600, Malaysia
机构
来源
Appl Comput Electromagn Soc J | / 11卷 / 1215-1222期
关键词
Optical resonators - Broadband networks - Ring gages - Microwave antennas - Thin films - Transparency - Ultra-wideband (UWB) - Dedicated short range communications;
D O I
暂无
中图分类号
学科分类号
摘要
A miniaturized thin film transparent ultrawideband (UWB) antenna design with a band notch is presented. A pair of split-ring resonators (SRRs) is placed besides the radiating element to realize the band notch centered at 5.5 GHz. The proposed transparent antenna covers the whole 3.1 to 10.6 GHz UWB frequency band with a notch from 5 to 6 GHz to isolate interferences from wireless local area network (WLAN) and dedicated short-range communication (DSRC) applications. The transparency of this antenna of up to 80% is enabled by the fabrication on a conductive silver coated thin film (AgHT-8). Hence, the proposed transparent antenna is a suitable for UWB home entertainment network (IEEE 1394 over UWB network) for green building applications, where high data rates are required for multimedia transfer. Implementation of the proposed transparent antenna will reduce the space consumption due to its very low thickness and low profile, while at the same time increasing the aesthetic values of the installed wireless system due to its high transparency. © 2015 ACES.
引用
收藏
相关论文
共 50 条
  • [31] DESIGN OF THE ULTRA-WIDEBAND ANTENNA WITH 5.2 GHz/5.8 GHz BAND REJECTION USING RECTANGULAR SPLIT-RING RESONATORS (SRRS) LOADING
    Kim, D. -O.
    Jo, N. -I.
    Choi, D. -M.
    Kim, C. -Y.
    JOURNAL OF ELECTROMAGNETIC WAVES AND APPLICATIONS, 2009, 23 (17-18) : 2503 - 2512
  • [32] Miniaturization of Slot Antenna Using Split Ring Resonators
    Shaw, Tarakeswar
    Bhattacharjee, Deepanjan
    Mitra, Debasis
    2015 IEEE APPLIED ELECTROMAGNETICS CONFERENCE (AEMC), 2015,
  • [33] A compact UWB slot antenna with signal rejection in 5-6 GHz band
    Subbarao, Akkala
    Raghavan, S.
    MICROWAVE AND OPTICAL TECHNOLOGY LETTERS, 2012, 54 (05) : 1292 - 1296
  • [34] On the Design of Compact UWB Antenna with 7.5 GHz Band- Notch Characteristics
    Shinde, Pratap N.
    Mishra, B. K.
    2013 INTERNATIONAL CONFERENCE ON ADVANCES IN TECHNOLOGY AND ENGINEERING (ICATE), 2013,
  • [35] A tri-band slot antenna loaded with split ring resonators
    Paul, Princy Maria
    Kandasamy, Krishnamoorthy
    Sharawi, M. S.
    MICROWAVE AND OPTICAL TECHNOLOGY LETTERS, 2017, 59 (10) : 2638 - 2643
  • [36] Design Based on Complementary Split-ring Resonators of an Antenna with Controllable Band Notches for UWB Cognitive Radio Applications
    Al-Husseini, Mohammed
    Ramadan, Ali
    El-Hajj, Ali
    Kabalan, Karim Y.
    Tawk, Youssef
    Christodoulou, Christos G.
    2011 IEEE INTERNATIONAL SYMPOSIUM ON ANTENNAS AND PROPAGATION (APSURSI), 2011, : 1120 - 1122
  • [37] Dual-Band Notch Filter Based on Twist Split Ring Resonators
    Sun, Haibin
    Feng, Cai
    Huang, Yongjun
    Wen, Ruiming
    Li, Jian
    Chen, Weijian
    Wen, Guangjun
    INTERNATIONAL JOURNAL OF ANTENNAS AND PROPAGATION, 2014, 2014
  • [38] A UWB antenna with reconfigurable rejection band using split ring resonator for radio cognitive technology
    El Maleky, Omar
    Ben Abdelouahab, Farid
    12TH INTERNATIONAL CONFERENCE INTERDISCIPLINARITY IN ENGINEERING (INTER-ENG 2018), 2019, 32 : 694 - 701
  • [39] Dual-band Microstrip Antenna for WiMAX Applications Using Complementary Split Ring Resonators
    Bassiuny, Mohamed A.
    Hamad, Ehab K. I.
    Aly, Wael A.
    Hamdallah, Mohamed Z. M.
    2016 33RD NATIONAL RADIO SCIENCE CONFERENCE (NRSC), 2016, : 57 - 63
  • [40] A dual band notched Ultra-wideband Antenna Using Complementary Split Ring Resonators
    Xiao, Binggang
    Wang, Xiumin
    Zhao, Jixiang
    2010 IEEE INTERNATIONAL CONFERENCE ON WIRELESS COMMUNICATIONS, NETWORKING AND INFORMATION SECURITY (WCNIS), VOL 1, 2010, : 107 - 109