强激光与粒子束, 2015, 27 (4): 043203, 网络出版: 2015-04-14  

连续波多普勒引信雷电电磁脉冲辐照效应

LEMP irradiation effects on continuous wave Doppler fuze
作者单位
1 军械工程学院 静电与电磁防护研究所, 石家庄 050003
2 77108部队, 四川 崇州 611233
摘要
为了研究雷电电磁脉冲场对连续波多普勒引信安全性能的影响,确定引信的能量耦合通道和效应规律,构建了引信雷电电磁脉冲辐照试验系统,并开展了该引信雷电电磁脉冲辐照效应试验。试验结果表明: 受试引信最佳能量耦合姿态为引信竖直向上,弹体轴线与辐射场传播方向垂直,三角环天线平面垂直于辐射场传播方向; 主要能量耦合通道为弹体; 不同辐照波形下引信的临界干扰场强不同,在配用152 mm弹体时,1.2/50,5.4/70,0.25/100和10/350 μs波形的临界干扰场强分别约为74,60,65和75 kV/m。雷电电磁脉冲对受试引信的作用机理为: 辐射能量通过弹体耦合到执行电路输入端,由于感应信号脉冲宽度满足触发脉冲宽度的最低要求,从而推动引信执行电路误动作。
Abstract
In order to study the security effect on a certain radio fuze of lightning electromagnetic pulse (LEMP), and confirm the energy coupling channel and the effect rules, an experiment system is constructed and LEMP irradiation experiments are done. Experiment results show that the best coupling pose is that the fuze is vertically upward, and the bomb body axis and the antenna plane are perpendicular to the radiation field propagation direction. The bomb body is the main energy coupling channel. Different irradiation wave has different threshold interference field. Under the 152 mm bomb body, the threshold interference fields of the irradiation waves of 1.2/50, 5.4/70, 0.25/100 and 10/350 μs, are about 74, 60, 65 and 75 kV/m. The effect mechanism of LEMP is that the irradiation energy couples to the input of the executive circuit. The pulse width of the coupling signal satisfies the requirement of the startup pulse width, leading to the miss-action of the executive circuit.
参考文献

[1] 田明宏, 魏光辉, 刘尚合, 等. 基于IEC标准雷电后续回击电磁场的计算[J]. 电子学报, 2003, 31(6): 951-954. (Tian Minghong, Wei Guanghui, Liu Shanghe, et al. The electromagnetic fields calculation of lightning subsequent return stroke based on IEC standards. Acta Electronica Sinicai, 2003, 31(6): 951-954)

[2] 张其林, 郄秀书, 张廷龙, 等. 雷电流波形的观测及沿通道时空分布的数值模拟[J]. 电子学报, 2008, 36(9): 1829-1832.(Zhang Qilin, Qie Xiushu, Zhang Tinglong, et al. Observation and numerical simulation of lightning discharge current along the lightning channel. Acta Electronica Sinicai, 2008, 36(9): 1829-1832)

[3] 祁树锋, 李夕海, 韩绍卿, 等. 核爆与雷电电磁脉冲识别[J]. 强激光与粒子束, 2012, 24(12): 2935-2939. (Qi Shufeng, Li Xihai, Han Shaoqing, et al. Discrimination of nuclear explosion and lightning electromagnetic pulse. High Power Laser and Particle Beams, 2012, 24(12): 2935-2939)

[4] 王晓嘉, 陈亚洲, 万浩江, 等. 斜向通道雷电电磁场远场近似特性[J]. 强激光与粒子束, 2013, 25(3): 699-703. (Wang Xiaojia, Chen Yazhou, Wan Haojiang, et al. Approximate characteristics of far-field lightning electromagnetic field from oblique discharge channel. High Power Laser and Particle Beams, 2013, 25(3): 699-703)

[5] 任合明, 周璧华, 余同彬, 等. 雷电电磁脉冲对架空电力线的耦合效应[J]. 强激光与粒子束, 2005, 17(10): 1539-1543. (Ren Heming, Zhou Bihua, Yu Tongbin, et al. Coupling effects of LEMP on aerial multiconductor power lines. High Power Laser and Particle Beams, 2005, 17(10): 1539-1543)

[6] 田明宏, 盛松林, 魏光辉, 等. 雷电回击参数对回击电磁场计算的影响研究[J]. 强激光与粒子束, 2003, 15(6): 599-603. (Tian Minghong, Sheng Songlin, Wei Guanghui, et al. Effects of several parameters on electromagnetic field of lightning return stroke. High Power Laser and Particle Beams, 2003, 15(6): 599-603)

[7] 闫岩, 崔占忠. 超宽带无线电引信抗干扰性能研究[J]. 兵工学报, 2010, 31(1): 13-17. (Yan Yan, Cui Zhanzhong. Anti-jamming performance of ultra wideband radio fuze. Acta Arm Am Entarii, 2010, 31(1): 13-17)

[8] Li Ming, Cui Zhanzhong, Zhang Wanjun. Interference of the cloud to capacitance proximity fuze[J]. Journal of Beijing Institute of Technology, 2004, 13(s1): 45-48.

[9] Giri D V, Tesche F M. Classification of intentional electromagnetic environments (IEME)[J]. IEEE Trans on Electromagnetic Compatibility, 2004, 46(3): 322-328.

[10] 费支强, 魏光辉, 耿利飞. 正弦波辐照对无线电引信的作用机理研究[J]. 电波科学学报, 2010, 25(2): 318-321. (Fei Zhiqiang, Wei Guanghui, Geng Lifei. Effecting mechanism of sine wave irradiation to radio fuze. Chinese Journal of Radio Science, 2010, 25(2): 318-321)

[11] 陈亚洲, 程二威, 费支强, 等. 无线电引信调幅波电磁辐射环境效应研究[J]. 电波科学学报, 2011, 26(6): 1187-1192.(Chen Yazhou, Cheng Erwei, Fei Zhiqiang, et al. Radiation environment effects of amplitude modulation wave on a certain radio fuze. Chinese Journal of Radio Science, 2011, 26(6): 1187-1192)

[12] 费支强, 魏光辉, 耿利飞. 正弦波对无线电引信耦合通道及作用机理[J]. 现代防御技术,2011, 39(1): 37-40. (Fei Zhiqiang, Wei Guanghui, Geng Lifei. Coupling entry ways and effecting mechanism of sine wave irradiation to radio fuze. Modern Defence Technology, 2011, 39(1): 37-40)

[13] 李永亮, 闫晓鹏, 郝新红, 等.超宽带电磁脉冲对典型引信的耦合效应研究[J]. 强激光与粒子束, 2014, 26: 073218. (Li Yongliang, Yan Xiaopeng, Hao Xinhong, et al. Coupling effect of ultra wideband electromagnetic pulse on typical fuze. High Power Laser and Particle Beams, 2014, 26: 073218)

[14] Wang Shaoguang,Wei Guanghui, Liu Hongbo. Test research on UWB effects and mechanism of radio fuze[C]//The 4th Asia-Pacific Conference on Environmental Electromagnetics. 2006: 249-252.

[15] 王绍光, 魏光辉, 陈亚洲, 等. 超宽谱对无线电引信的作用效应实验研究[J]. 高电压技术, 2006, 32(11): 78-80. (Wang Shaoguang, Wei Guanghui, Chen Yazhou, et al. Experimental research on the radiation effect of the UWS-HPM to radio fuze. High Voltage Engineering, 2006, 32(11): 78-80)

[16] 王绍光, 魏光辉, 陈亚洲, 等.无线电引信的超宽谱辐照效应及其防护[J]. 强激光与粒子束, 2007, 19(11): 1873-1877. (Wang Shao-guang, Wei Guanghui, Chen Yazhou, et al. Radiation effects of ultra-wide spectrum on radio fuze and its protection. High Power Laser and Particle Beams, 2007, 19(11): 1873-1877)

[17] 李刚, 赵月飞, 刘尚合, 等. 无线电引信执行电路抗超宽谱电磁脉冲研究[J]. 高电压技术, 2007, 33(3): 128-131. (Li Gang, Zhao Yuefei, Liu Shanghe, et al. Research on the amelioration of radio fuze’s execution circuits against UWS-EMP. High Voltage Engineering, 2007, 33(3): 128-131)

[18] 李刚, 毕军建, 刘尚合, 等. 超宽谱电磁脉冲对无线电引信的耦合剂防护加固[J]. 强激光与粒子束, 2006, 18(8): 1332-1336. (Li Gang, Bi Junjian, Liu Shanghe, et al. Coupling mechanism between radio fuzes and ultra band spectra electromagnetic pulse and enhancement of radio fuzes. High Power Laser and Particle Beams, 2006, 18(8): 1332-1336)

[19] 魏光辉, 陈亚洲, 孙永卫. 微波辐照对无线电引信的影响与作用机理[J]. 强激光与粒子束, 2005, 17(1): 88-92. (Wei Guanghui, Chen Yazhou, Sun Yongwei. Effects and effecting mechanism of microwave irradiation on the radio fuze. High Power Laser and Particle Beams, 2005, 17(1): 88-92)

[20] 陈亚洲, 魏光辉, 刘尚合. 强电磁场对某型无线电引信安全性的影响[J]. 强激光与粒子束, 2005, 17(7): 1047-1050. (Chen Yazhou, Wei Guanghui, Liu Shanghe. Effect of lightning electromagnetic environment on radio fuze. High Power Laser and Particle Beams, 2005, 17(7): 1047-1050)

[21] 魏明, 孙永卫, 陈亚洲, 等. LEMP对某型无线电引信的影响研究[J]. 军械工程学院学报, 2002, 14(3): 8-13. (Wei Ming, Sun Yongwei, Chen Yazhou, et al. Study on effect of LEMP to a certain radio fuze. Journal of Ordnance Engineering College, 2002, 14(3): 8-13)

[22] 范丽思, 张希军, 魏光辉, 等. 800 kV雷电电磁脉冲场模拟器的研制[J]. 高电压技术,2007, 33(12): 36-38. (Fan Lisi, Zhang Xijun, Wei Guanghui, et al. Design of an 800 kV LEMP simulator. High Voltage Engineering, 2007, 33(12): 36-38)

[23] 熊久良, 武占成, 孙永卫, 等. 能量型干扰下无线电引信辐照效应试验方法[J]. 高电压技术, 2014, 40(9): 2783-2790. (Xiong Jiuliang, Wu Zhancheng, Sun Yongwei, et al. Experimental method of radio fuze radiation effect under energy-type electromagnetic interference. High Voltage Engineering, 2014, 40(9): 2783-2790)

熊久良, 武占成, 孙永卫, 杨清熙, 程二威, 王琳. 连续波多普勒引信雷电电磁脉冲辐照效应[J]. 强激光与粒子束, 2015, 27(4): 043203. Xiong Jiuliang, Wu Zhancheng, Sun Yongwei, Yang Qingxi, Cheng Erwei, Wang Lin. LEMP irradiation effects on continuous wave Doppler fuze[J]. High Power Laser and Particle Beams, 2015, 27(4): 043203.

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