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Design, Investigation and Measurement of A Compact Ultra Wideband Antenna for Portable Applications


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[1] Federal Communications Commission. (2002). FirstReport and Order in the Matter of Revision of Part 15of the Commission’s Rules Regarding Ultra-WidebandTransmission Systems. ET-Docket 98-153.Search in Google Scholar

[2] Azim, R., Islam, M.T., Misran, N. (2011). Ground modified double-sided printed compact UWB antenna. Electronics Letters, 47 (1), 9-11.10.1049/el.2010.3160Search in Google Scholar

[3] Cai, L.Y., Li, Y., Zeng, G., Yang, H.C. (2010). Compact wideband antenna with double-fed structure having band-notched characteristics. ElectronicsLetters, 46 (33), 1534-1536.10.1049/el.2010.2574Search in Google Scholar

[4] Jung, E.-Y., Lee, J.W., Cho, C.S. (2010). Signal distortion analysis of L-shaped UWB antenna. IEEEAntennas and Wireless Propagation Letters, 9, 775-778.10.1109/LAWP.2010.2058991Search in Google Scholar

[5] Mobashsher, A.T., Islam, M.T., Misran, N. (2011). Loaded annular ring slot microstrip antenna for wideband and multi-band operation. MicrowaveJournal, 54 (9), 146-158.Search in Google Scholar

[6] Azim, R., Mobashsher, A.T., Islam, M.T., Misran, N. (2010). Compact planar antenna for UWB applications. In 2010 International Conference onMicrowave and Millimeter Wave Technology(ICMMT), 8-11 May 2010. IEEE, 1987-1990.10.1109/ICMMT.2010.5525150Search in Google Scholar

[7] Thomas, K.G., Sreenivasan, M. (2010). A simple ultrawideband planar rectangular printed antenna with band dispensation. IEEE Transactions on Antennasand Propagation, 58 (1), 27-34.10.1109/TAP.2009.2036279Search in Google Scholar

[8] Shambavi, K., Alex, Z.C. (2010). Printed dipole antenna with band rejection characteristics for UWB applications. IEEE Antennas and WirelessPropagation Letters, 9, 1029-1032.10.1109/LAWP.2010.2089966Search in Google Scholar

[9] Azim, R., Islam, M.T., Mobashsher, A.T., Misran, N., Yatim, B. (2011). Compact printed ultra-wideband antenna with dual band- notch characteristics. In 14thInternational Conference on Computer andInformation Technology (ICCIT), 22-24 December 2011. IEEE, 117-121.10.1109/ICCITechn.2011.6164885Search in Google Scholar

[10] Mobashsher, A.T., Misran, N., Islam, M.T. (2011). Ultra-compact wideband antenna for portable device applications. Informacije MIDEM, 41 (3), 179-181.Search in Google Scholar

[11] Medeiros, C.R., Costa, J.R., Fernandes, C.A. (2009). Compact tapered slot UWB antenna with WLAN band rejection. IEEE Antennas and Wireless PropagationLetters, 8, 661-664.10.1109/LAWP.2009.2022063Search in Google Scholar

[12] Kiminami, K., Hirata, A., Shiozawa, T. (2004) Double-sided printed bow-tie antenna for UWB communications. IEEE Antennas and WirelessPropagation Letters, 3 (1), 152-153.10.1109/LAWP.2004.832126Search in Google Scholar

[13] Choi, S.H., Park, J.K., Kim, S.K., Park, J.Y. (2004). A new ultra-wideband antenna for UWB applications. Microwave and Optical Technology Letters, 40 (5), 399-401.10.1002/mop.11392Search in Google Scholar

[14] Zaker, R., Ghobadi, C., Nourinia, J. (2008). Novel modified UWB planar monopole antenna with variable frequency band-notch function. IEEE Antennas andWireless Propagation Letters, 7, 112-114.10.1109/LAWP.2008.919621Search in Google Scholar

[15] Gayathri, R., Jisney, T.U., Krishna, D.D., Gopikrishna, M., Aanandan, C.K. (2008). Band-notched invertedcone monopole antenna for compact UWB systems. Electronics Letters, 44 (20), 1170-1171.10.1049/el:20081770Search in Google Scholar

[16] Azim, R., Islam, M.T., Misran, N., Mobashsher, A.T. (2011). Compact UWB planar antenna for broadband applications. Informacije MIDEM, 41 (1), 37-40.Search in Google Scholar

[17] Azim, R., Misran, N., Mobashsher, A.T., Islam, M.T. (2011). Compact planar antenna with dual bandnotched characteristics for UWB applications. In IEEEInternational Conference on Space Science andCommunication (IconSpace), 12-13 July 2011. IEEE, 269-272.10.1109/IConSpace.2011.6015898Search in Google Scholar

[18] Mobashsher, A.T., Bais, B., Misran, N., Islam, M.T. (2010). Compact wideband microstrip antenna for universal 5 GHz WLAN applications. AustralianJournal of Basic and Applied Sciences, 4 (8), 3411-3417.Search in Google Scholar

[19] Mobashsher, A.T., Islam, M.T., Misran, N. (2010). Wideband compact antenna with partially radiating coplanar ground plane. The Applied ComputationalElectromagnetics Society Journal, 26 (1), 73-81.Search in Google Scholar

[20] Qing, X., Chen, Z.N. (2009). Compact coplanar waveguide-fed ultra-wideband monopole-like slot antenna. IET Microwaves, Antennas & Propagation, 3 (5), 889-898.10.1049/iet-map.2008.0075Search in Google Scholar

[21] Yan, X.-R., Zhong, S.-S., Wang, G.-Y. (2008). Compact printed monopole antenna with 24:1 impedance bandwidth. Electronics Letters, 44 (2), 73-74.10.1049/el:20083031Search in Google Scholar

[22] Lin, W.-P., Huang, C.-H. (2009). Coplanar waveguide-fed rectangular antenna with an inverted-L stub for ultrawideband communications. IEEEAntennas and Wireless Propagation Letters, 8, 228-231.Search in Google Scholar

[23] Zheng, Z.-A., Chu, Q.-X. (2009). CPW-fed ultrawideband antenna with compact size. ElectronicsLetters, 45 (12), 593-594.Search in Google Scholar

[24] Xia, Y.Q., Duan, Z.G. (2008). Compact CPW-fed dual ellipses antenna for ultra-wideband system. Electronics Letters, 44 (9), 567.10.1049/el:20080198Search in Google Scholar

[25] Ebrahimi, E., Litschke, O., Baggen, R., Hall, P.S. (2010). Isolation enhancement of planar disc antenna and ground plane in UWB applications. ElectronicsLetters, 46 (23), 1539-1541.10.1049/el.2010.2775Search in Google Scholar

[26] Chamaani, S., Mirtaheri, S.A., Paran, K., Abolghasemi, A., Fardis, M. (2010). Coplanar waveguide-fed ultra wideband planar monopole antenna optimization. IET Microwaves, Antennas &Propagation, 4 (9), 1264-1274.10.1049/iet-map.2009.0038Search in Google Scholar

[27] Tanyer-Tigrek, F.M., Hizal, A., Lager, I.E., Ligthart, L.P. (2010). On the operating principles of UWB, CPW-fed printed antennas. IEEE Antennas andPropagation Magazine, 52 (3), 46-50.10.1109/MAP.2010.5586574Search in Google Scholar

[28] Koohestani, M., Golpour, M. (2010). U-shaped microstrip patch antenna with novel parasitic tuning stubs for ultra wideband applications. IETMicrowaves, Antennas & Propagation, 4 (7), 938-946.10.1049/iet-map.2009.0049Search in Google Scholar

[29] Chen, M.-E., Wang, J.-H. (2008). CPW-fed crescent patch antenna for UWB applications. ElectronicsLetters, 44 (10), 613-614.10.1049/el:20080505Search in Google Scholar

[30] Chen, S.-Y., Wang, P.-H., Hsu, P. (2006). Uniplanar log-periodic slot antenna fed by a CPW for UWB applications. IEEE Antennas and WirelessPropagation Letters, 5 (1), 256-259.10.1109/LAWP.2006.873956Search in Google Scholar

[31] Kim, Y., Kwon, D.-H. (2008). CPW-fed right-angled dual tapered notch antenna for ultra-wideband communication. Electronics Letters, 41 (12), 674-675.Search in Google Scholar

[32] Joon I.K., Yong, J. (2007). Design of ultrawideband coplanar waveguide-fed LI-shape planar monopole antennas. IEEE Antennas and Wireless PropagationLetters, 6, 383-387.Search in Google Scholar

[33] Yang, G.M., Jin, R.H., Xiao, G.B., Vittoria, C., Harris, V.G., Sun, N.X. (2009). Ultrawideband (UWB) antennas with multiresonant split-ring loops. IEEETransactions on Antennas and Propagation, 57 (1), 256-260.10.1109/TAP.2008.2009744Search in Google Scholar

[34] Sze, J.-Y., Hsu, C.-I.G., Shiu, J.-Y. (2008). Small CPW-fed band-notched ultrawideband rectangular aperture antenna. IEEE Antennas and WirelessPropagation Letters, 7, 513-516.10.1109/LAWP.2008.2006007Search in Google Scholar

[35] Mobashsher, A.T., Islam, M.T., Misran, N. (2011). Design and development of compact microstrip antennas for portable device applications. InformacijeMIDEM, 41 (2), 105-113.Search in Google Scholar

[36] Chen, H.-D. (2003). Broadband CPW-fed square slot antennas with a widened tuning stub. IEEETransactions on Antennas and Propagation, 51 (8), 1982-1986.10.1109/TAP.2003.814747Search in Google Scholar

[37] Cho, Y.J., Kim, K.H., Choi, D.H., Lee, S.S., Park, S.- O. (2006). A miniature UWB planar monopole antenna with 5-GHz band-rejection filter and the timedomain characteristics. IEEE Transactions onAntennas and Propagation, 54 (5), 1453-1460.10.1109/TAP.2006.874354Search in Google Scholar

[38] Azim, R., Islam, M.T., Misran, N. (2011). Design of a planar UWB antenna with new band enhancement technique. The Applied ComputationalElectromagnetics Society Journal, 26 (10), 856-862.Search in Google Scholar

[39] Azim, R., Islam, M.T., Misran, N., Mandeep, J.S., Mobashsher, A.T. (2012). UWB antenna adds two notches. Microwaves and RF, 51 (12), 56-61.Search in Google Scholar

[40] Azim, R., Mobashsher, A.T., Islam, M.T. (2013). UWB antenna with notched band at 5.5 GHz. Electronics Letters, 49 (15), 922-924.Search in Google Scholar

[41] Liu, L., Cheung, S.W., Azim, R., Islam, M.T. (2011). A compact circular-ring antenna for ultra-wideband applications. Microwave and Optical TechnologyLetters, 53 (10), 2283-2288.10.1002/mop.26295Search in Google Scholar

[42] Azim, R., Islam, M.T., Misran, N. (2010). Printed planar antenna for wideband applications. Journal ofInfrared, Millimeter, and Terahertz Waves, 31 (8), 969-978. 10.1007/s10762-010-9655-7Search in Google Scholar

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Sprache:
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