Scattering cross section of unequal length dipole arrays / Hema Singh, H.L. Sneha, Rakesh Mohan Jha.

This book presents a detailed and systematic analytical treatment of scattering by an arbitrary dipole array configuration with unequal-length dipoles, different inter-element spacing and load impedance. It provides a physical interpretation of the scattering phenomena within the phased array system...

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Bibliographic Details
Online Access: Full Text (via Springer)
Main Authors: Singh, Hema (Author), Sneha, H. L. (Author), Jha, R. M. (Rakesh Mohan), 1959-2015 (Author)
Format: eBook
Language:English
Published: Singapore : Springer, [2016]
Series:SpringerBriefs in electrical and computer engineering. Computational electromagnetics.
Subjects:

MARC

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505 0 |a Preface; Acknowledgments; Contents; About the Authors; List of Figures; List of Tables; 1 Scattering Cross Section of Unequal Length Dipole Arrays; Abstract; 1 Introduction; 2 Formulation for the RCS of Dipole Array; 2.1 Reflection at the Dipole Terminals; 2.2 Reflection at the Terminals of Extra Component; 2.3 Reflection at the Phase-Shifters; 2.4 Reflection at the Coupler Ports; 2.4.1 Signal Reflection at the Input Port(s) of the Couplers Connected to Phase-Shifters; 2.4.2 Signal Reflection at Other Coupler Ports; 3 Results and Discussion; 3.1 RCS Estimation of Series-Fed Dipole Array. 
505 8 |a 3.1.1 Equal-Length Dipole Array3.1.2 Unequal-Length Dipole Array; 3.1.3 Role of Mutual Coupling Effect in RCS Estimation of Unequal Length Dipole Array; 3.1.4 Effect of Terminal Impedance on RCS of Unequal-Length Dipole Array Including Mutual Coupling Effect; 3.2 RCS Estimation of Parallel-Fed Dipole Array; 3.2.1 Equal-Length Dipole Array; 3.2.2 Unequal-Length Dipole Array; 3.2.3 Mutual Coupling Effect in Unequal-Length Dipole Array with Parallel Feed Network; 3.2.4 Role of Terminating Impedance on RCS of Unequal-Length; 4 Conclusion; References; About the Book; Author Index; Subject Index. 
520 |a This book presents a detailed and systematic analytical treatment of scattering by an arbitrary dipole array configuration with unequal-length dipoles, different inter-element spacing and load impedance. It provides a physical interpretation of the scattering phenomena within the phased array system. The antenna radar cross section (RCS) depends on the field scattered by the antenna towards the receiver. It has two components, viz. structural RCS and antenna mode RCS. The latter component dominates the former, especially if the antenna is mounted on a low observable platform. The reduction in the scattering due to the presence of antennas on the surface is one of the concerns towards stealth technology. In order to achieve this objective, a detailed and accurate analysis of antenna mode scattering is required. In practical phased array, one cannot ignore the finite dimensions of antenna elements, coupling effect and the role of feed network while estimating the antenna RCS. This book presents the RCS estimation of an array with unequal-length dipoles. The signal reflections within the antenna system and the mutual coupling effect are considered to arrive at the total RCS for series and parallel feed. The computations are valid for any arbitrary array configurations, including side-by-side arrangement, parallel-in-echelon, etc. 
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650 7 |a Scattering (Physics)  |2 fast  |0 (OCoLC)fst01106581. 
700 1 |a Sneha, H. L.,  |e author. 
700 1 |a Jha, R. M.  |q (Rakesh Mohan),  |d 1959-2015,  |e author.  |0 http://id.loc.gov/authorities/names/n96052733  |1 http://isni.org/isni/0000000035165017. 
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