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  • Signal Processing for Multistatic Radar Systems: Adaptive Waveform Selection, Optimal Geometries and Pseudolinear Tracking Algorithms

    Signal Processing for Multistatic Radar Systems by Nguyen, Ngoc Hung; Doganï¿1⁄2ay, Kutluyil;

    Adaptive Waveform Selection, Optimal Geometries and Pseudolinear Tracking Algorithms

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      • Publisher's listprice EUR 131.00
      • The price is estimated because at the time of ordering we do not know what conversion rates will apply to HUF / product currency when the book arrives. In case HUF is weaker, the price increases slightly, in case HUF is stronger, the price goes lower slightly.

        54 332 Ft (51 745 Ft + 5% VAT)
      • Discount 10% (cc. 5 433 Ft off)
      • Discounted price 48 899 Ft (46 571 Ft + 5% VAT)

    54 332 Ft

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    Product details:

    • Publisher Elsevier Science
    • Date of Publication 26 October 2019

    • ISBN 9780128153147
    • Binding Paperback
    • No. of pages188 pages
    • Size 228x152 mm
    • Weight 320 g
    • Language English
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    Long description:

    Signal Processing for Multistatic Radar Systems: Adaptive Waveform Selection, Optimal Geometries and Pseudolinear Tracking Algorithms addresses three important aspects of signal processing for multistatic radar systems, including adaptive waveform selection, optimal geometries and pseudolinear tracking algorithms. A key theme of the book is performance optimization for multistatic target tracking and localization via waveform adaptation, geometry optimization and tracking algorithm design. Chapters contain detailed mathematical derivations and algorithmic development that are accompanied by simulation examples and associated MATLAB codes. This book is an ideal resource for university researchers and industry engineers in radar, radar signal processing and communications engineering.

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    Table of Contents:

    1. Introduction

    Part 1. Adaptive waveform selection
    2. Waveform selection for multistatic tracking of a maneuvering Target
    3. Waveform selection for multistatic target tracking in clutter
    4. Waveform selection for multistatic target tracking with Cartesian estimates
    5. Waveform selection for distributedmultistatic target tracking

    Part 2. Optimal geometry analysis
    6. Optimal geometries for multistatic target localization with one transmitter and multiple receivers
    7. Optimal geometries for multistatic target localization by independent bistatic channels

    Part 3. Pseudolinear tracking algorithms
    8. Batch track estimators formultistatic target motion analysis
    9. Closed-form solutions for multistatic target localization with time-difference-of-arrival measurements

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