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A miniaturized multi-octave Vivaldi antenna for electronic warfare systems

, 2020
Antennas with multi-octave bandwidth are widely used for applications such as phased arrays, electronic warfare, and radar navigation due to wide bandwidth, high gain, wide beam width, and flat conformal characteristics.
K. Premchand, P. Krishna
semanticscholar   +1 more source

Photonics for Ultrawideband RF Spectral Analysis in Electronic Warfare Applications

IEEE Journal of Selected Topics in Quantum Electronics, 2019
Electronic warfare receivers must satisfy particularly demanding requirements, and current electronic solutions must find a tradeoff between the request for high performance (in particular, very wide bandwidth, very high sensitivity, and very linear ...
P. Ghelfi   +3 more
semanticscholar   +1 more source

Radar Electronic Warfare Techniques

2021
This chapter presents a taxonomy of radar electronic warfare techniques and then address some of the most common mitigation techniques, the Chapter is concluded with sample case study that enforces the theory. Active and passive electronic attack technique are described.
Bassem R. Mahafza, Robert J. Balla
openaire   +1 more source

Electronic Warfare Innovations

Naval Engineers Journal, 1996
Abstract  Modern technology has resulted in significant innovations in Electronic Warfare. The Microwave Monolithic Integrated Circuit (MMIC) program has resulted in Electronic Warfare RF receivers that are orders of magnitude smaller, lighter and cheaper than receivers produced only a few years ago.
openaire   +1 more source

Efficient waveform design with jamming characteristics for precision electronic warfare

Signal Processing, 2023
Zhong‐ping Yang   +6 more
semanticscholar   +1 more source

Cyber warfare and electronic warfare integration in the operational environment of the future: cyber electronic warfare

SPIE Proceedings, 2015
For the states with advanced technology, effective use of electronic warfare and cyber warfare will be the main determining factor of winning a war in the future’s operational environment. The developed states will be able to finalize the struggles they have entered with a minimum of human casualties and minimum cost thanks to high-tech.
Osman Askin, Riza Irmak, Mustafa Avsever
openaire   +1 more source

Electronic Warfare Overview

2016
Because radar systems find and make measurements of noncooperative targets, it motivates various countering actions. Motorists might want to deprive the highway patrolman of information about their speed to avoid a ticket. Certainly, nations want to deny other nations all kinds of information, particularly in times of tension or war. Electronic warfare
openaire   +1 more source

Electronic Warfare—A Perspective

IETE Technical Review, 2000
(2000). Electronic Warfare—A Perspective. IETE Technical Review: Vol. 17, No. 6, pp. 319-323.
openaire   +1 more source

Electronic Warfare Test

1999
Abstract : The tasking to conduct an ADS-based EW test called for an airborne self-protection jammer (SPJ) as the system under test (SUT). The emphasis of the EW Test was on the performance of the ADS components and their contribution or impact to testing rather than on the performance of the SPJ pod itself.
openaire   +1 more source

Lasers in Electronic Warfare

CLEO:2011 - Laser Applications to Photonic Applications, 2011
The use of lasers for Electronic Warfare applications will be discussed and reviewed. Specific examples of deployed EW systems which include lasers will be presented along with a discussion of their most salient features.
openaire   +1 more source

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