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Research on Efficiency Evaluation of Airborne Fire-Control Radar in Complex Electromagnetic Environment |
NI Hanqi1, WANG Wei2, JIANG Ruiqi1, ZHANG Wei1, HE Zishu1 |
1. School of Information and Communication Engineering, University of Electronic and Science Technology of China, Chengdu 611731,Sichuan,China; 2. Shanghai Academy of Spaceflight Technology, Shanghai 201109, China |
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Abstract Facing the rapid development of electronic warfare, in order to solve the problem of how to quickly obtain the battlefield situation,the effectiveness evaluation of airborne fire-control radar systems in complex electromagnetic environments was proposed in this paper. Based on the analysis of mission requirements and targets for airborne fire-control radars in actual combat scenarios, this study has decomposed their various capabilities and indicators, constructed an evaluation index system framework for airborne fire-control radar effectivenessin complex electromagnetic environments, and focused on analyzing effective evaluation indicators for clutter suppression and anti-jamming capabilities, along with detailed designs for their quantification methods. In experimental simulations, the study utilizedthe analytic hierarchy process (AHP) to acquire the weights of evaluation indicators and employed comprehensive evaluation methods to calculate the valuesof various capabilities, which verified the practicality and effectiveness of the model. This study provides support for relevant decision-making regarding airborne fire-control radars in operational environments.
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Received: 23 July 2024
Published: 23 November 2024
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[1] |
ZHANG Jiangnan, CHEN Fei, RONG Jiangang, WANG Xin, WANG Chao, LI Yansong, ZHANG Jin. Equivalent Construction Method of Dynamic Test Electromagnetic Environment Based on Characterization Surface[J]. Air & Space Defense, 2022, 5(1): 86-93. |
[2] |
HU Bin, HE Qiang, WU Yatao, SUN Qingyang, LIU Yunshen. Modeling and Characteristics Analysis of Two-Dimensional Space-Time Clutter for Airborne Bistatic Radar[J]. Air & Space Defense, 2022, 5(1): 37-44. |
[3] |
LI Qi, LI Fan, TANG Shanjun, WANG Bingqian, ZHANG Li. Research on Anti-jamming Performance Simulation Test and Evaluation Technology of Infrared Seeker[J]. Air & Space Defense, 2020, 3(4): 127-133. |
[4] |
JIANG Xiaoming, WANG Xufeng, ZHANG Weifang, LIU Yigang. Coarse-fine Compound Axis Cooperative Control Strategy Optimization for Laser Tracking & Aiming System [J]. Air & Space Defense, 2019, 2(3): 31-37. |
[5] |
Rong Jiangang, Tang Mang, Wang Xin. Discussion on Conception of Software-based Electronic Blue Force Equipment[J]. Air & Space Defense, 2018, 1(2): 37-41. |
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