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Titlebook: Ultra-Wideband Short-Pulse Electromagnetics 8; Carl E. Baum,Alexander P. Stone,J. Scott Tyo Book 2007 Springer-Verlag New York 2007 Planar

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书目名称Ultra-Wideband Short-Pulse Electromagnetics 8
编辑Carl E. Baum,Alexander P. Stone,J. Scott Tyo
视频video
概述Focuses on advanced technologies for the generation, radiation and detection of ultra-wideband short pulse signals.Reports on developments in supporting mathematical and numerical methods and describe
图书封面Titlebook: Ultra-Wideband Short-Pulse Electromagnetics 8;  Carl E. Baum,Alexander P. Stone,J. Scott Tyo Book 2007 Springer-Verlag New York 2007 Planar
描述The eighth conference on Ultra-Wideband, Short-Pulse Electromagnetics (UWBSP8) was held at the Convention Center of Albuquerque, New Mexico, USA, on 9-14 July 2006. This was part of AMEREM 2006. This in turn was part of a Joint Symposium including IEEE Antennas and Propagation Society International Symposium and USNC (US National Committee)/URSI (International Union of Radio Science) National Radio Science Meeting. This continues the tradition extending through Magdeburg, Germany (2004), on back to their beginning at Polytechnic University in Brooklyn, New York, USA (1992). Like the previous conferences, the eighth in this series extends the earlier results. The subjects include pulse radiation and measurement, scattering theory, target detection and identification, antennas, signal processing, communications, and related subjects. It should be noted that, at this Joint Symposium, ultra-wideband was prominently recognized by the presentation of the John Kraus Antenna Award of the IEEE Antennas and Propagation Society to C. E. Baum, E. G. Farr, and D. V. Giri “For development of novel and innovative ultra-wideband antenna concepts that have enabled a new area of electromagnetics. ”
出版日期Book 2007
关键词Planar; Potential; Taper; UWB; antenna; development; electromagnetics; imaging; magnetic field; scattering th
版次1
doihttps://doi.org/10.1007/978-0-387-73046-2
isbn_softcover978-1-4419-2507-7
isbn_ebook978-0-387-73046-2
copyrightSpringer-Verlag New York 2007
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A Quasi-Planar Wide Band Conical Antennaated on non-magnetic dielectric slab is proposed. The proposed antenna has a quasi-planar structure. It is mechanically stable, and easy to build and integrate with planar circuits. A full wave analysis code is developed to simulate this novel conical antenna. It is shown that the input impedance re
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An Omnidirectional and Low-VSWR Ultra Wideband Antenna for a Frequency Band of 6 to 40 GHzin the designated bandwidth for 6 -40 GHz). The teardrop is connected to the inner conductor of the coaxial cable that penetrates the ground plane. The tip of the inner conductor of a K connector was inserted into the apex of the teardrop.
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Comparison of UWB Antennas Considering Pattern Variation With Frequencylso used to determine the pattern stability bandwidth of those antennas. The PSF is defined in the frequency domain because UWB regulations (e.g. on bandwidth, mask level etc.) are specified in this domain but it also represents waveform fidelity and omni-directionality in the time domain. It is imp
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Application of UWB Antenna Descriptors to Antenna Performance Assessmenteded. In this sense, the compactness of the descriptor means that it should summarize the performance of the antenna (or antenna system) in a single parameter, in order to simplify its design using optimization techniques.Lamensdorf used a time domain approach, defining signal fidelity as a measure
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Electromagnetic Lens Design and Generalized E and H Modeso EM lens design was initiated by C. E. Baum and has been applied successfully in many applications. Specifically the scaling method creates a class of equivalent electromagnetic problems each having a complicated geometry and medium from an electromagnetic problem having a simple (Cartesian) geomet
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