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Publishing Language: Chinese | Open Access

False alarm interference laws of dual frequency electromagnetic radiation in band to stepped frequency continuous wave radar

Kai ZHAO1,2Guanghui WEI1( )Xue DU1Hongze ZHAO1Jianyong ZHENG1
National Key Laboratory on Electromagnetic Environment Effects, Shijiazhuang Campus of Army Engineering University, Shijiazhuang 050003, China
The PLA Unit 63870, Huayin 714200, China
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Abstract

In order to master the false alarm laws of dual frequency electromagnetic radiation in band to radar, the stepped frequency continuous wave radar was taken as the research object, based on the theoretical analysis and effect test, the level change law, waveform characteristics and location law of false alarm target were studied. Results show that: under the effect of dual frequency electromagnetic radiation in the band, the tested radar can generate at most two “hill type” false alarm targets with random positions without considering intermodulation interference, and the distance difference is related to the frequency difference of dual frequency interference. The two components of the dual frequency interference signal suppress each other, that is, if the intensity of one component is constant, with the enhancement of another component, the level of the false alarm target formed by the former decreases slowly and the final deceleration is basically constant, while the level of the false alarm target formed by the latter increases gradually until the level is constant. If the strength of the two components of the dual frequency interference signal increases in the same proportion, the levels of both two false alarm targets rise approximately linearly at the initial stage, and then the growth rate gradually decreases to zero.

CLC number: TN95; O441.4 Document code: A Article ID: 1001-2486(2023)03-204-07

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Journal of National University of Defense Technology
Pages 204-210

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Cite this article:
ZHAO K, WEI G, DU X, et al. False alarm interference laws of dual frequency electromagnetic radiation in band to stepped frequency continuous wave radar. Journal of National University of Defense Technology, 2023, 45(3): 204-210. https://doi.org/10.11887/j.cn.202303023

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Received: 06 June 2021
Published: 28 June 2023
© 2023 Journal of National University of Defense Technology

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).