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Bistatic Radar with Quantum-Generated Noise Phase Manipulation and Non-Directional Antennas
Nikolay Gueorguiev1, Atanas Nachev2, Ognyan Todorov3
1Institute of Robotics, Bulgarian Academy of Sciences, Acad. Georgi Bonchev Str., Bl. 2, 1113 Sofia, Bulgaria.
Sensors (Basel, Switzerland)
|March 14, 2026
Summary
This study introduces two novel approaches for bistatic noise radars. These methods enhance electronic protection and stealth capabilities using quantum-generated noise and synchronized antenna emissions for improved radar performance.
Area of Science:
- Radar Technology
- Quantum Information Science
- Electromagnetics
Background:
- Bistatic noise radars represent a significant advancement in radar technology.
- Existing methods for bistatic radar design require further development to enhance capabilities.
Purpose of the Study:
- To propose two novel approaches for the design of bistatic noise radars.
- To improve electronic protection, stealth, and signal processing capabilities of bistatic radars.
Main Methods:
- Utilizing quantum-generated random number sequences for phase manipulation control, offering practically infinite duration and enhanced electronic protection.
- Introducing synchronized emissions from both antennas to control the electromagnetic field, improving signal processing and achieving electronic stealth.
Main Results:
- Achieved enhanced electronic protection through non-repeating phase manipulation codes.
- Enabled formation of a controlled electromagnetic field, improving received-signal processing.
- Enhanced radar stealth by creating a fictitious electromagnetic center and complicating antenna location determination.
Conclusions:
- The proposed methods offer significant improvements in bistatic noise radar design.
- Quantum-generated noise and synchronized emissions are effective for enhancing radar security and performance.
Keywords:
bistatic radarcontrolled electromagnetic centerquantum generation of digital random numbersrandom phase manipulationtrilaterationMore Related Videos
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