Vol. 34
Latest Volume
All Volumes
PIERM 130 [2024] PIERM 129 [2024] PIERM 128 [2024] PIERM 127 [2024] PIERM 126 [2024] PIERM 125 [2024] PIERM 124 [2024] PIERM 123 [2024] PIERM 122 [2023] PIERM 121 [2023] PIERM 120 [2023] PIERM 119 [2023] PIERM 118 [2023] PIERM 117 [2023] PIERM 116 [2023] PIERM 115 [2023] PIERM 114 [2022] PIERM 113 [2022] PIERM 112 [2022] PIERM 111 [2022] PIERM 110 [2022] PIERM 109 [2022] PIERM 108 [2022] PIERM 107 [2022] PIERM 106 [2021] PIERM 105 [2021] PIERM 104 [2021] PIERM 103 [2021] PIERM 102 [2021] PIERM 101 [2021] PIERM 100 [2021] PIERM 99 [2021] PIERM 98 [2020] PIERM 97 [2020] PIERM 96 [2020] PIERM 95 [2020] PIERM 94 [2020] PIERM 93 [2020] PIERM 92 [2020] PIERM 91 [2020] PIERM 90 [2020] PIERM 89 [2020] PIERM 88 [2020] PIERM 87 [2019] PIERM 86 [2019] PIERM 85 [2019] PIERM 84 [2019] PIERM 83 [2019] PIERM 82 [2019] PIERM 81 [2019] PIERM 80 [2019] PIERM 79 [2019] PIERM 78 [2019] PIERM 77 [2019] PIERM 76 [2018] PIERM 75 [2018] PIERM 74 [2018] PIERM 73 [2018] PIERM 72 [2018] PIERM 71 [2018] PIERM 70 [2018] PIERM 69 [2018] PIERM 68 [2018] PIERM 67 [2018] PIERM 66 [2018] PIERM 65 [2018] PIERM 64 [2018] PIERM 63 [2018] PIERM 62 [2017] PIERM 61 [2017] PIERM 60 [2017] PIERM 59 [2017] PIERM 58 [2017] PIERM 57 [2017] PIERM 56 [2017] PIERM 55 [2017] PIERM 54 [2017] PIERM 53 [2017] PIERM 52 [2016] PIERM 51 [2016] PIERM 50 [2016] PIERM 49 [2016] PIERM 48 [2016] PIERM 47 [2016] PIERM 46 [2016] PIERM 45 [2016] PIERM 44 [2015] PIERM 43 [2015] PIERM 42 [2015] PIERM 41 [2015] PIERM 40 [2014] PIERM 39 [2014] PIERM 38 [2014] PIERM 37 [2014] PIERM 36 [2014] PIERM 35 [2014] PIERM 34 [2014] PIERM 33 [2013] PIERM 32 [2013] PIERM 31 [2013] PIERM 30 [2013] PIERM 29 [2013] PIERM 28 [2013] PIERM 27 [2012] PIERM 26 [2012] PIERM 25 [2012] PIERM 24 [2012] PIERM 23 [2012] PIERM 22 [2012] PIERM 21 [2011] PIERM 20 [2011] PIERM 19 [2011] PIERM 18 [2011] PIERM 17 [2011] PIERM 16 [2011] PIERM 14 [2010] PIERM 13 [2010] PIERM 12 [2010] PIERM 11 [2010] PIERM 10 [2009] PIERM 9 [2009] PIERM 8 [2009] PIERM 7 [2009] PIERM 6 [2009] PIERM 5 [2008] PIERM 4 [2008] PIERM 3 [2008] PIERM 2 [2008] PIERM 1 [2008]
2014-01-07
Ultra-Wideband Antenna Arrays: Systems with Transfer Function and Impulse Response
By
Progress In Electromagnetics Research M, Vol. 34, 117-123, 2014
Abstract
This paper proposes some approaches to model Ultra Wideband (UWB) antenna arrays. Based on the array factor, often stipulated as not adapted for the description of the properties of UWB arrays in the literature, an analytical expression of the beampattern is developed. The achieved results are coherent with other formulations and empiric studies proposed in the literature. Furthermore, a time-frequency modeling of UWB antenna arrays is proposed using the concept of array factor and antenna effective length.
Citation
Yvan Duroc, "Ultra-Wideband Antenna Arrays: Systems with Transfer Function and Impulse Response," Progress In Electromagnetics Research M, Vol. 34, 117-123, 2014.
doi:10.2528/PIERM13121903
References

1. Wilmotte, R. M. and J. McPetrie, "A theoretical investigation of the phase relations in beam systems ," Institute of Electrical Engineers --- Proc. of the Wireless Section, Vol. 3, No. 9, 182-187, Sept. 1928.

2. Foschini, G. F. and M. J. Gans, "On limits of wireless communications in a fading environment when using multiple antennas ," Wireless Personal Communications Journal, Vol. 6, No. 3, 311-315, March 1998.
doi:10.1023/A:1008889222784

3. Jensen, M. and J. Wallace, "A review of antennas and propagation for MIMO wireless communications," IEEE Trans. on Antennas and Propagation, Vol. 52, No. 11, 2810-2824, November 2004.
doi:10.1109/TAP.2004.835272

4. Chen, C. and M. Jensen, "Secret key establishment using temporally and spatially correlated wireless channel coefficients," IEEE Trans. on Mobile Computing, Vol. 10, No. 2, 205-215.
doi:10.1109/TMC.2010.114

5. Federal Communications Commission (FCC) "Revision of part 15 of the commission rules regarding ultra-wideband transmission systems," ET Docket 98-153, FCC 02-48, First Report and Order, April 2002.

6. Kaiser, T., F. Zheng, and E. Dimitrov, "An overview of ultra-wide-band systems with MIMO," Proc. of the IEEE, Vol. 97, No. 2, 285-312, February 2009.
doi:10.1109/JPROC.2008.2008784

7. Hong, S., K. Chung, J. Lee, S. Jung, S. S. Lee, and J. Choi, "Printed diversity antenna with stubs for UWB applications," Microwave Optical Technology Letters, Vol. 5, No. 5, 1352-1356, May 2008.
doi:10.1002/mop.23389

8. Zhang, S., Z. Ying, J. Xiong, and S. He, "Ultrawideband MIMO/diversity antennas with a tree-like structure to enhance wideband isolation," IEEE Antennas and Wireless Propagation Letters, Vol. 8, 2009.

9. Najam, A. I., Y. Duroc, and S. Tedjini, "Design & characterization of an antenna system for UWB-MIMO communication systems," Proc. of European Conference on Antennas and Propagation, April 2010.

10. Ciattaglia, M. and G. Marrocco, "Investigation on antenna coupling in pulsed arrays," IEEE Trans. on Antennas and Propagation, Vol. 54, No. 3, 835-843, March 2006.
doi:10.1109/TAP.2006.869930

11. Hussain, M. and A. Al-Zayed, "Aperture-sparsity analysis of ultrawideband two-dimensional focused array," IEEE Trans. on Antennas and Propagation, Vol. 56, No. 7, 1908-1918, July 2008.
doi:10.1109/TAP.2008.924699

12. Shlivinski, A., "Kinematic properties of short-pulsed sparse transmitting arrays," Progress In Electromagnetic Research, Vol. 115, 11-33, 2011.

13. Sipal, V., D. Edwards, and B. Allen, "Descriptor choice for UWB antenna arrays," Proc. of. European Conference on Antennas and Propagation, March 2012.

14. Sipal, V., D. Edwards, and B. Allen, "Bandwidth requirement for suppression of grating lobes in ultrawideband antenna arrays," Proc. of International Conference on Ultra-Wideband, 236-240, Sept. 2012.

15. Farr, E. G. and C. E. Baum, "Extending the definitions of antenna gains and radiation pattern into the time domain ," Sensor and Simulation Note 350, November 1992.

16. Wiesbeck, W., G. Adamiuk, and C. Sturm, "Basic properties and design principles of UWB antennas," Proc. of the IEEE, Vol. 97, No. 2, 372-385, February 2009.
doi:10.1109/JPROC.2008.2008838

17. Duroc, Y., A. Ghiotto, T. P. Vuong, and S. Tedjini, "On the characterization of UWB antennas," International Journal of RF and Microwave Computer-Aided Engineering, Vol. 19, No. 2, 258-269, March 2009.
doi:10.1002/mmce.20347

18. Balanis, C., Antenna Theory: Analysis and Design, Wiley-Blackwell, May 2005.

19. Duroc, Y., A. Ghiotto, T. P. Vuong, and S. Tedjini, "UWB antennas: Systems with transfer function and impulse response," IEEE Trans. on Antennas and Propagation, Vol. 55, No. 5, 1449-1451, May 2007.
doi:10.1109/TAP.2007.895636

20. Orfanidis, S. F., "Electromagnetic Waves and Antennas,", 2010.
doi:http://www.ece.rutgers.edu/»orfanidi/ewa/.

21. Baum, C. E., "Time domain characterization of antennas with TEM feeds," Sensor and Simulation Notes, Note 426, October 1998.

22. Shlivinski, A., E. Heyman, and R. Kastner, "Antenna characterization in the time domain," IEEE Trans. on Antenna and Propagation, Vol. 45, No. 7, 1140-1147, July 1997.
doi:10.1109/8.596907

23. Duroc, Y., "On the system modeling of antennas," Progress In Electromagnetics Research B, Vol. 21, 69-85, 2010.