Signal polarization selection for aircraft radar control : models and methods /

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Bibliographic Details
Author / Creator:Yurkov, Nikolay Kondratyevich.
Imprint:Singapore : Springer, 2021.
Description:1 online resource (153 p.).
Language:English
Series:Springer aerospace technology
Springer aerospace technology.
Subject:
Format: E-Resource Book
URL for this record:http://pi.lib.uchicago.edu/1001/cat/bib/12611817
Hidden Bibliographic Details
Other authors / contributors:Bukharov, Alexey Yevgenyevich.
Zatuchny, Dmitry Alexandrovich.
Anna, Kudriashova, translator.
ISBN:9789813349643
9813349646
9789813349636
9813349638
Notes:Description based upon print version of record.
Includes bibliographical references.
Summary:This book highlights the synthesis of polarization selection system in the background of passive noise formed by reflections from space-distributed targets. This synthesis is fulfilled as close as possible to its ideal configuration in terms of maximal signal-to-noise ratio for the matched load of radar station antenna system. It presents a new approach to radar system resolution enhancement based on the development of mathematical model for radiometric receivers with mono-pulse antenna systems, as well as creation of a new algorithm that allows increasing angular resolution during the objects search and tracking due to special signal processing.
Other form:Print version: Yurkov, Nikolay Kondratyevich Signal Polarization Selection for Aircraft Radar Control Singapore : Springer Singapore Pte. Limited,c2021 9789813349636
Standard no.:10.1007/978-981-33-4964-3
Table of Contents:
  • Intro
  • Introduction
  • Contents
  • Basic Agreed Notations
  • Abbreviations
  • 1 General Principles of System Analysis of the Problems of Radar Contrast Increment Control Processes
  • 1.1 Nature of System Analysis
  • 1.2 System Analysis Procedure
  • 1.3 Objectives of a System Analysis of the Radar Detection Control Processes
  • References
  • 2 Synthesis of Signal's Polarization Selection System with the Background of Passive Noise Formed by Reflections from Distributed Targets
  • 2.1 Problem Formulation
  • 2.2 Analysis of Radar Channel Model
  • 2.3 Analysis of Scattering Polarization Characteristics of Large-Scale Impedance of Randomly Uneven Surface
  • 2.3.1 Analysis of the Current Status of the Issue
  • 2.3.2 Scattering Characteristics of Large-Scale Measuring of Randomly Uneven Surface
  • 2.4 Methods of Noise Influence Diminishing Based on Different Polarization Structure of Target Signal and Noise Signal
  • 2.5 Analysis of Current Methods and Devices for Polarization Selection
  • 2.5.1 Research Problem Formulation
  • 2.5.2 Analysis of Methods for Antenna System Polarization Diagram Readjustment
  • 2.6 Synthesis of Signal Selection System in the Background of Passive Noise Formed by Reflections from Separation Surface
  • References
  • 3 Primary Ways of Technical Implementation of Developed Selection System and Methods of Device's Error Minimizing
  • 3.1 Estimation of Influence of Cross-Polarization Degree in Antenna System Radiation on the Accuracy of Radar Measurements. Methods of Its Diminishing
  • 3.2 Mirror Antenna Scattering Matrix
  • 3.3 Synthesis of the Uniform Polarization Diagram for Mirror Antenna
  • 3.4 Analysis of Scattering Matrix of Ideal Device for Polarization Readjustment
  • 3.5 Derivation of the Formula for Parabolic Antenna Radiation Components with Fundamental and Cross-Polarizations
  • 3.6 Solution for Synthesis of Line Feed with Given Amplitude Directional Diagram
  • 3.7 Model of Matrix Joint Correlation Function of Probing and Reflected Vector Signals for Conceptual Design of Aerial Radar with Synthesized Aperture
  • 3.7.1 Structural Diagram of Conceptual Design of Radar with Synthesized Aperture
  • 3.7.2 Model of Matrix Joint Correlation Function for Probing and Reflected Vector Signals
  • References
  • 4 Experimental Testing of Theoretical Results
  • 4.1 Research of Scattering Polarization Characteristics of the Signals Reflected in Specular Direction from the Real Separation Surface
  • 4.2 Synthesis of One-Mirror Antenna Linear Feed Eliminating Cross-Polarized Radiation
  • References