陆军工程大学石家庄校区电磁环境效应重点实验室,河北石家庄 050003
[ "孙江宁 男,1995年5月生于山东海阳. 现为陆军工程大学石家庄校区电磁环境效应重点实验室硕士研究生. 主要研究方向为电磁环境效应试验技术. E-mail:sunjiangning111@163.com" ]
[ "潘晓东(通信作者) 男,1980年9月生于吉林桦甸.现为陆军工程大学石家庄校区电磁环境效应重点实验室副教授、硕士生导师. 主要研究方向为电磁环境效应试验方法.E-mail:panxiaodong1980@sina.com" ]
[ "卢新福 男,1988年1月生于山东威海. 现为陆军工程大学石家庄校区电磁环境效应重点实验室讲师、硕士生导师. 主要研究方向为电磁环境效应测试与电磁兼容测试方法.E-mail:luxinfu123@126.com" ]
[ "万浩江 男,1983年7月生于河北清河. 现为陆军工程大学石家庄校区电磁环境效应重点实验室讲师. 主要研究方向为电磁环境效应和电磁兼容.E-mail:hbwhj1983@163.com" ]
[ "魏光辉 男,1964年11月生于河北宁晋. 现为陆军工程大学石家庄校区电磁环境效应重点实验室教授、博士生导师. 主要研究方向为电磁环境效应试验与防护技术. E-mail:wei-guanghui@sohu.com" ]
收稿:2021-01-22,
修回:2021-04-30,
网络出版:2022-02-08,
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孙江宁, 潘晓东, 卢新福, 等. 基于网络链路的双线互联系统注入等效替代辐照理论模型研究[J/OL]. 电子学报, 2022,1-8.
Jiang-ning SUN, Xiao-dong PAN, Xin-fu LU, et al. Research on Theoretical Model of Injection Equivalently Replacing Radiation Based on Network Link for Two-Wire Interconnection System[J/OL]. ACTA ELECTRONICA SINICA, 2022, 1-8.
孙江宁, 潘晓东, 卢新福, 等. 基于网络链路的双线互联系统注入等效替代辐照理论模型研究[J/OL]. 电子学报, 2022,1-8. DOI: 10.12263/DZXB.20210147.
Jiang-ning SUN, Xiao-dong PAN, Xin-fu LU, et al. Research on Theoretical Model of Injection Equivalently Replacing Radiation Based on Network Link for Two-Wire Interconnection System[J/OL]. ACTA ELECTRONICA SINICA, 2022, 1-8. DOI: 10.12263/DZXB.20210147.
大范围空间模拟强场电磁环境辐射效应难度巨大,并且现有大电流注入技术在非线性系统的应用上存在局限性.为解决上述问题,进行了双线互联系统耦合通道非线性系统大电流注入等效替代辐照试验方法的研究.分别建立了辐照和注入条件下的受试设备的响应分析计算模型.以受试设备响应相等作为等效依据,推导出辐照场强与注入激励电压源的等效对应关系是线性的,并通过电磁仿真软件CST进行了验证.提出了大电流注入等效替代辐照的试验方法,并通过了实装试验的验证.研究结果表明,提出的双线互联系统大电流注入的方法可以准确等效非线性系统的辐照试验测试,误差不超过1dB,可以满足工程的实际需求.
It is very difficult to simulate the radiation effect of high field electromagnetic environment in a large-scale space
and the existing bulk current injection technology has limitations in the application of nonlinear systems. The research on the equivalent alternative radiation test method of bulk current injection for nonlinear systems in the parallel-double-wire coupling channel is carried out. The response analysis and calculation models of the device under test under radiation and injection conditions are established respectively. Taking the equal response of the device under test as the equivalent basis
it is deduced that the equivalent corresponding relationship between the radiated field intensity and the injected excitation voltage source is linear
and it is verified by the electromagnetic simulation software CST. The test method of bulk current injection equivalent to replace radiation is proposed
and it has passed the verification of the actual installation test. The research results show that the proposed method of bulk current injection can be accurately equivalent to the radiation test of the nonlinear system in the parallel-double-wire coupling channel
and the error does not exceed 1dB
which can meet the actual needs of the project.
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