Broadband Planar Antennas: Design and Applications by Zhi Ning Chen

By Zhi Ning Chen

The expanding call for for instant communications has revolutionised the life-style of today’s society and one of many key elements of instant expertise is antenna design.  Broadband planar antennas are the most recent new release of antennas boasting the sexy gains required, corresponding to large working bandwidth, low profile, mild weight, budget friendly and simplicity of integration into arrays or Radio Frequency (RF) circuits, to lead them to perfect elements of recent communications structures. study into small and broadband antennas has been spurred by way of the speedy improvement of transportable instant communique units reminiscent of mobile phones, laptops and private electronic assistants.

This all-encompassing quantity, Broadband Planar Antennas: layout and functions, systematically describes the ideas for all planar antennas from microstrip patch antennas, suspended plate antennas and planar inverted-L/F antennas to planar dipole antennas. additionally mentioned are the most fresh results similar to broadband antenna matters in promising ultra-wideband functions.

  • Clearly describes the basics of planar antennas and categorises them based on their radiation features
  • Introduces the complex growth in broadband planar antennas for contemporary instant communications
  • Includes a wealth of case stories, layout instructions, figures and tables

this article is key interpreting for antenna, RF and microwave engineers and brands in the telecommunications undefined. Its hugely obtainable strategy also will attract researchers, postgraduate scholars and educational teachers.

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F. Harrington, Time-harmonic Electromagnetic Fields. New York: McGraw Hill, 1961. [2] R. E. Collin and S. Rothschild, ‘Evaluation of antenna Q,’ IEEE Transactions on Antennas and Propagation, vol. 29, no. 1, pp. 23–27, 1964. [3] R. L. Fante, ‘Quality factor of general ideal antenna,’ IEEE Transactions on Antennas and Propagation, vol. 17, no. 2, pp. 151–155, 1969. [4] D. M. Grimes and C. A. Grimes, ‘Bandwidth and Q of antennas radiating TE and TM modes,’ IEEE Transactions on Antennas and Propagation, vol.

Kastner, E. Heyman and A. Sabban, ‘Spectral domain iterative analysis of single- and double-layered microstrip antennas using the conjugate gradient algorithm,’ IEEE Transactions on Antennas and Propagation, vol. 36, no. 9, pp. 1204–1212, 1988. [24] M. A. Sultan, ‘The mode features of an ideal-gap open-ring microstrip antenna,’ IEEE Transactions on Antennas and Propagation, vol. 37, no. 2, pp. 137–142, 1989. [25] M. Himdi, J. P. Daniel and C. Terret, ‘Analysis of aperture-coupled microstrip antenna using cavity method,’ Electronics Letters, vol.

9] Z. N. Chen and M. Y. W. Chia, ‘Enhanced radiation performance of a suspended plate antenna,’ Proceedings of International Conference on Electromagnetic and Advanced Applications (ICEAA), Torino, Italy, vol. 1, September 2001. [10] Z. N. Chen and M. Y. W. Chia, ‘Center-fed microstrip patch antenna,’ IEEE Transactions on Antennas and Propagation, vol. 51, no. 3, pp. 483–487, 2003. [11] Z. N. Chen and M. Y. W. Chia, ‘A novel center-fed suspended plate antenna,’ IEEE Transactions on Antennas and Propagation, vol.

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