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Active Cancellation of Probing in Linear Dipole Phased Array [electronic resource] / by Hema Singh, N. Bala Ankaiah, Rakesh Mohan Jha.

By: Contributor(s): Series: SpringerBriefs in Electrical and Computer EngineeringPublisher: Singapore : Springer Singapore : Imprint: Springer, 2015Edition: 1st ed. 2015Description: XXII, 58 p. 63 illus., 60 illus. in color. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9789812878298
Subject(s): Genre/Form: Additional physical formats: Printed edition:: No titleDDC classification:
  • 621.3 23
LOC classification:
  • TK7876-7876.42
Online resources:
Contents:
Introduction -- Formulation for Adapted Pattern in Dipole Array -- Simulation Results: Without Mutual Coupling -- Mutual Coupling Effect in Array Processing -- Simulation Results: With Mutual Coupling -- Edge Effect in Array Processing -- Conclusion.
In: Springer eBooksSummary: In this book, a modified improved LMS algorithm is employed for weight adaptation of dipole array for the generation of beam pattern in multiple signal environments. In phased arrays, the generation of adapted pattern according to the signal scenario requires an efficient adaptive algorithm. The antenna array is expected to maintain sufficient gain towards each of the desired source while at the same time suppress the probing sources. This cancels the signal transmission towards each of the hostile probing sources leading to active cancellation. In the book, the performance of dipole phased array is demonstrated in terms of fast convergence, output noise power and output signal-to-interference-and noise ratio. The mutual coupling effect and role of edge elements are taken into account. It is established that dipole array along with an efficient algorithm is able to maintain multilobe beamforming with accurate and deep nulls towards each probing source. This work has application to the active radar cross section (RCS) reduction. This book consists of formulation, algorithm description and result discussion on active cancellation of hostile probing sources in phased antenna array. It includes numerous illustrations demonstrating the theme of the book for different signal environments and array configurations. The concepts in this book are discussed in an easy-to-understand manner, making it suitable even for the beginners in the field of phased arrays and adaptive array processing.
Item type: eBooks
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Introduction -- Formulation for Adapted Pattern in Dipole Array -- Simulation Results: Without Mutual Coupling -- Mutual Coupling Effect in Array Processing -- Simulation Results: With Mutual Coupling -- Edge Effect in Array Processing -- Conclusion.

In this book, a modified improved LMS algorithm is employed for weight adaptation of dipole array for the generation of beam pattern in multiple signal environments. In phased arrays, the generation of adapted pattern according to the signal scenario requires an efficient adaptive algorithm. The antenna array is expected to maintain sufficient gain towards each of the desired source while at the same time suppress the probing sources. This cancels the signal transmission towards each of the hostile probing sources leading to active cancellation. In the book, the performance of dipole phased array is demonstrated in terms of fast convergence, output noise power and output signal-to-interference-and noise ratio. The mutual coupling effect and role of edge elements are taken into account. It is established that dipole array along with an efficient algorithm is able to maintain multilobe beamforming with accurate and deep nulls towards each probing source. This work has application to the active radar cross section (RCS) reduction. This book consists of formulation, algorithm description and result discussion on active cancellation of hostile probing sources in phased antenna array. It includes numerous illustrations demonstrating the theme of the book for different signal environments and array configurations. The concepts in this book are discussed in an easy-to-understand manner, making it suitable even for the beginners in the field of phased arrays and adaptive array processing.

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