Antenna Theory: Analysis and Design by Constantine A. Balanis

By Constantine A. Balanis

The self-discipline of antenna conception has skilled huge technological adjustments. In reaction, Constantine Balanis has up-to-date his vintage textual content, Antenna idea , supplying the newest examine the entire valuable subject matters. New fabric contains shrewdpermanent antennas and fractal antennas, in addition to the newest purposes in instant communications. Multimedia fabric on an accompanying CD provides PowerPoint viewgraphs of lecture notes, interactive evaluation questions, Java animations and applets, and MATLAB good points. just like the past variants, Antenna idea, 3rd variation meets the desires of electric engineering and physics scholars on the senior undergraduate and starting graduate degrees, and people of working towards engineers in addition. it's a benchmark textual content for getting to know the newest conception within the topic, and for higher knowing the technological applications.

An Instructor's handbook featuring targeted recommendations to all of the difficulties within the e-book is on the market from the Wiley editorial division.

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P. Fontana, “A 3-D Hybrid Finite Element/Boundary Element Method for the Unified Radiation and Scattering Analysis of General Infinite Periodic Arrays,” IEEE Trans. , Vol. 43, No. 2, pp. 145–153, February 1995. 62. IEEE Trans. , Special Issue on Metamaterials, Vol. 51, No. 10, October 2003. 63. IEEE Trans. , Special Issue on Artificial Magnetic Conductors, Soft/ Hard Surfaces and Other Complex Surfaces, Vol. 53, No. 1, Jan. 2005. 64. IEEE Trans. , Special Issue on Wireless Information Technology and Networks, Vol.

80, No. 1, pp. 24–43, January 1992. 50. P. H. Pathak, “High-Frequency Techniques for Antenna Analysis,” Proc. IEEE, Vol. 80, No. 1, pp. 44–65, January 1992. 51. R. J. Marhefka and W. D. Burnside, “Antennas on Complex Platforms,” Proc. IEEE, Vol. 80, No. 1, pp. 204–208, January 1992. 52. G. A. Thiele, “Overview of Selected Hybrid Methods in Radiating System Analysis,” Proc. IEEE, Vol. 80, No. 1, pp. 66–78, January 1992. 53. J. C. Maloney, G. S. Smith, and W. R. , “Accurate Computation of the Radiation from Simple Antennas using the Finite-Difference Time-Domain Method,” IEEE Trans.

Each time step is 5 picoseconds while each FD-TD cell is 3 mm on a side. The movie is 37 frames long covering 185 picoseconds of elapsed time. 3 cm and is modeled by 2500 square FD-TD cells (50×50), including 6 cells to implement the PML ABC. B. Infinite Line Source in a PEC Square Cylinder (tm box) This problem is simulated similarly as that of the line source in an unbounded medium, including the characteristics of the pulse. The major difference is that the computational domain of this problem is truncated by PEC walls; therefore there is no need for CURRENT DISTRIBUTION ON A THIN WIRE ANTENNA 17 PML ABC.

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