摘要
                
                    舰船作为一个综合作战平台,装备着各种先进的电子通信设备,极易产生电磁干扰而影响舰船通信系统正常运行,为此抑制舰船通信系统电磁干扰是提升舰船综合作战效能的关键举措。基于对电磁干扰形成机制及其危害的思考,提出了改善舰船通信系统电磁干扰的合理化建议,同时为实现全舰电磁兼容,进一步研究了舰船电磁兼容仿真实验,通过复杂设备模型与简化设备模型的电磁兼容仿真结果对比分析,表明简化模型仿真可以快速、准确、高效地仿真电子设备的电磁兼容性能,是抑制舰船电子通信系统电磁干扰有效的方法。
                
                Inview of the numerous shipborneelectronic communication equipment,electromagnetic interference is occurred easily,which canaffect the normal operation of shipborne integrated communication system.The key way of improving shipborneintegrated combat effectivenessis to suppress electromagnetic interference of shipborne communication system.In this paper,the formation mechanismof electromagnetic interference and its harmfulness were analyzed,reasonable suggestions were put forward to alleviate electromagnetic interferences of shipborne integrated communication system,and meanwhile theexperiment of shipborneelectromagnetic compatibility simulation was researched.The experiment results show thatin terms of simulating the electromagnetic compatibility performance of electronic equipment quickly,accurately and efficiently,suppressing electromagnetic interference ofshipborne communication system,the simplified electronic equipment modelsimulation is better than complex equipment model simulation.
    
    
                作者
                    田子希
                    田林洁
                Tian Zixi;Tian Linjie(The Fifth Military Representative Office of Shanghai District,Naval Dept.of Equip.,Shanghai,200135)
     
    
    
                出处
                
                    《电子测试》
                        
                        
                    
                        2020年第21期100-101,103,共3页
                    
                
                    Electronic Test
     
    
                关键词
                    舰船通信系统
                    电子设备
                    电磁干扰
                    电磁兼容
                    电磁兼容仿真
                
                        shipbornecommunication system communication system
                        electronic equipment
                        EMI
                        EMC
                        EMC simulation