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Simulation of Monopulse Radar Under Jamming Environments Based on Space Slicing
Shaoning Lu1, Yuefeng Deng2, Liehu Wu2
1College of Computer Science and Technology, Nanjing University of Aeronautics and Astronautics, Nanjing 211106, China.
This study introduces a space slicing strategy to speed up monopulse radar anti-jamming simulations. The method significantly enhances simulation efficiency while maintaining small target parameter estimation errors.
Area of Science:
- Radar Systems Engineering
- Electromagnetic Compatibility
- Computational Simulation
Background:
- Monopulse radar simulations require extensive computational resources, particularly in complex jamming environments.
- Evaluating anti-jamming performance is time-consuming due to echo/jamming signal generation and real-time processing.
Purpose of the Study:
- To propose an efficient simulation strategy for monopulse radar anti-jamming performance evaluation.
- To reduce the computational burden and time consumption of radar simulations.
Main Methods:
- A space slicing strategy is proposed, dividing the operational space into discrete grid points.
- Simulation results from slices replace full-process real-time signal processing.
- Theoretical analysis of estimation errors for target range, velocity, and angle is performed.
Main Results:
- The space slicing strategy dramatically improves simulation speed.
- Target parameter estimation errors remain relatively small compared to traditional methods.
- The efficiency of the radar simulation system is significantly enhanced.
Conclusions:
- The proposed space slicing strategy is an effective method for improving monopulse radar simulation efficiency.
- This approach allows for faster evaluation of anti-jamming capabilities in complex scenarios.
- The trade-off between simulation speed and accuracy is favorable.
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