Fr. 189.00

Advanced Metric Wave Radar

English · Hardback

Shipping usually within 6 to 7 weeks

Description

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This book systematically describes advanced metric wave radar and its practical applications, offering a comprehensive introduction to the engineering design methods from the perspectives of system design, antenna/feed and transmit/receive subsystems, as well as mechanical structure design. Focusing on the height-finding method, it describes in detail how the super-resolution technique can be used to solve the problem of low-angle height finding in metric wave radar. It also discusses the anti-jamming method for the unique jamming environment. Further, it presents narrowband target recognition methods to overcome the limitations of narrow absolute bandwidth in metric wave radar and to further explore the technique's potential. Cooperative detection for metric wave radar netting is also addressed, and the main experimental results are included. The book offers a valuable resource for professional engineers, researchers and teachers, as well as graduate students engaged in radar system engineering, electronic engineering, and signal processing.

List of contents

Introduction.- Target Characteristics in Metric Wave Band.- System Design of Advanced Metric Wave Radar.- Height Finding Technology of Metric Wave Radar.- Metric Wave Radar Anti-Jamming Technology.- Antenna Technology for Metric Wave Band.- Transmit/Receive Technology for Metric Wave Band.- Target Classification and Recognition Technologies of Advanced Metric Wave Radar.- Cooperative Detection Technology for Metric Wave Radar.- Structural Design of Large Metric Wave Radar.- System Test and Verification.

About the author

Wu Jianqi was born in Yibin, Sichuan, China in 1966. In 1983 and 1990, he received B.S. degree at Beijing University of Aeronautics and Astronautics and M.S. degree at University of Electronic Science and Technology, respectively. He is the chief scientist of China Electronics Technology Group Corporation (CETC), the director of science and technology commission of the 38th research institute of CETC, and the chairman of Radar Society of Chinese Institute of Electronics. He has been working in radar for more than 20 years. He was in charge of the key national defense advance research project “Sparse Array Synthetic Impulse and Aperture Radar Experimental System” and several key model projects. He received one first-class reward of National Scientific and Technological Progress Award, two second-class rewards of National Scientific and Technological Progress Award twice, several first-class rewards of National Defense Scientific and Technological Progress Prize, etc. His current research interests include advanced metric wave radar, synthetic impulse and aperture radar, and new radar system design. He has published over 30 articles and 3 books entitled Synthetic Impulse and Aperture Radar(SIAR): A Novel Multi-Frequency MIMO Radar(in English and Chinese), Advanced Metric Wave Radar (in Chinese). He also obtained 13 authorized invention patents.

Summary

This book systematically describes advanced metric wave radar and its practical applications, offering a comprehensive introduction to the engineering design methods from the perspectives of system design, antenna/feed and transmit/receive subsystems, as well as mechanical structure design. Focusing on the height-finding method, it describes in detail how the super-resolution technique can be used to solve the problem of low-angle height finding in metric wave radar. It also discusses the anti-jamming method for the unique jamming environment. Further, it presents narrowband target recognition methods to overcome the limitations of narrow absolute bandwidth in metric wave radar and to further explore the technique’s potential. Cooperative detection for metric wave radar netting is also addressed, and the main experimental results are included. The book offers a valuable resource for professional engineers, researchers and teachers, as well as graduate students engaged in radar system engineering, electronic engineering, and signal processing.

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