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Radiolocation Devices for Detection and Tracking Small High-Speed Ballistic Objects-Features, Applications, and
Marek Brzozowski1, Mariusz Pakowski1, Mirosław Nowakowski1
1Laboratory Testing of Radar and Aviation Technology, Air Force Institute of Technology (AFIT), 01-494 Warsaw, Poland.
Sensors (Basel, Switzerland)
|December 11, 2019
Summary
This study details advanced radiolocation devices and multifunctional radars for tracking high-speed ballistic objects. It explores space search technology and adaptive algorithms for enhanced air object detection and tracking capabilities.
Area of Science:
- Radar technology and aerospace engineering.
- Ballistic object detection and tracking.
Background:
- Traditional radar systems face challenges in detecting and tracking small, high-speed ballistic objects.
- The need for multifunctional radars capable of handling diverse air traffic scenarios is increasing.
Purpose of the Study:
- To describe advanced radiolocation devices and multifunctional radars for detecting and tracking small, high-speed ballistic objects.
- To present the application of space search technology and adaptive algorithms in parallel with classic air traffic control.
Main Methods:
- Implementation of space search technology and adaptive algorithms for air object detection and tracking.
- Parallel operation of advanced and classic search and tracking functions within multifunctional radars.
Main Results:
- Demonstration of radiolocation devices capable of detecting and tracking small, high-speed ballistic objects.
- Presentation of examples of foreign and Polish-produced multifunctional radar systems.
- Inclusion of methods for testing radars and observation results of combat ammunition.
Conclusions:
- Advanced radiolocation and multifunctional radars offer enhanced capabilities for tracking high-speed ballistic objects.
- The integration of space search technology and adaptive algorithms improves detection and tracking performance.
- Testing methodologies and real-world observations validate the effectiveness of these radar systems.
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