scholarly journals Research on the test method of substituting bulk current injection for electromagnetic radiation in the coupling channel of parallel double lines

AIP Advances ◽  
2021 ◽  
Vol 11 (5) ◽  
pp. 055205
Author(s):  
Jiangning Sun ◽  
Xiaodong Pan ◽  
Xinfu Lu ◽  
Haojiang Wan ◽  
Guanghui Wei
2021 ◽  
Vol 2021 ◽  
pp. 1-9
Author(s):  
Biao Wang ◽  
Yongwei Sun ◽  
Xuetian Wang ◽  
Guanghui Wei ◽  
Hongmin Gao

The present study proposed the equivalent test method for the strong electromagnetic field radiation of electric explosive devices (EEDs) of the weapon equipment to satisfy the military requirements of the electromagnetic radiation safety test, as well as the evaluation of the electric ignition, the electric initiation ammunition, or missiles. Under stable conditions, the ignition excitation test and the bridge wire temperature increase test were performed to determine the ignition temperature of the EED. As radiated by the strong electromagnetic field, the relationship between the temperature increase of the bridge wire and the electric field intensity of the EED was developed based on the theoretical analysis and the experimental test. Given the ignition temperature of the EED, the radiation field intensity of the EED at 50% ignition was determined. As compared with the 50% ignition field intensity of the EED directly radiated by the strong electromagnetic field, an error less than 1 dB was caused. On that basis, the correctness of the equivalent test method was verified. Accordingly, this method was suggested to act as an effective method and technical means to test and evaluate the electromagnetic radiation safety of ammunition and missiles in unfavorable electromagnetic environments.


2014 ◽  
Vol 2014 ◽  
pp. 1-13
Author(s):  
Xiaodong Pan ◽  
Guanghui Wei ◽  
Xinfu Lu ◽  
Lisi Fan ◽  
Xing Zhou

This paper presents a new kind of differential-mode current injection test method. The equal response voltage on the cable or the antenna port of the equipment under test (EUT) is regarded as equivalent principle for radiation and injection test. The injection and radiation response analysis model and the injection voltage source extrapolation model in high intensity radiated field are established. The conditions of using differential-mode current injection as a substitute for radiation are confirmed. On the basis of the theoretical analysis, the function and structure design scheme of the directional coupling device is proposed. The implementation techniques for the single differential-mode current injection method (SDMCI) and the double differential-mode current injection method (DDMCI) are discussed in detail. The typical nonlinear response interconnected systems are selected as the EUT. The test results verify the validity of the SDMCI and DDMCI test methods.


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