论文:2016,Vol:34,Issue(4):703-707
引用本文:
郭淑霞, 张磊, 董文华, 高颖. 区域电磁环境的动态特性表征[J]. 西北工业大学学报
Guo Shuxia, Zhang Lei, Dong Wenhua, Gao Ying. Manifestion of Electromagnetic Environment Based on Mathematical Morphology and Fractal Theory[J]. Northwestern polytechnical university

区域电磁环境的动态特性表征
郭淑霞1, 张磊1, 董文华1, 高颖2
1. 西北工业大学 无人机特种技术国防重点实验室, 陕西 西安 710065;
2. 西北工业大学 航海学院, 陕西 西安 710072
摘要:
区域电磁环境中各种电磁干扰辐射信号种类繁多、调制体制各异,信号参数的动态变化,传播路径及其相应影响的不确定性,表现为电磁信号在时间、能量上相互干扰发生异常变化造成电磁环境动态性异常激烈,导致区域内接受设备系统性能下降。针对这一问题,提出基于分形理论与数学形态学相结合的方法,研究区域电磁环境动态特征,利用分形维数表征电磁环境动态性。首先,基于信号基础理论对区域接收点处电磁信号的集合进行建模;其次,利用数学形态学滤波原理对接收的电磁信号集合进行交替滤波,滤除电磁信号中的脉冲噪声和白噪声;最后,运用分形理论求解电磁环境接收点集合的关联维数,并对计算结果进行仿真分析,表明该方法能从时间、空间和能量上为电磁环境的动态性提供有利支撑。
关键词:    电磁环境    数学形态学    动态性    分形理论    分形维数   
Manifestion of Electromagnetic Environment Based on Mathematical Morphology and Fractal Theory
Guo Shuxia1, Zhang Lei1, Dong Wenhua1, Gao Ying2
1. Science and Technology on UAV Laboratory at Northwestern Polytechnical University, Xi'an 710065, China;
2. School of Marine Science and Technology, Northwestern Polytechnical University, Xi'an 710072, China
Abstract:
A novel scale indicator calculation method is introduced based on fractal theory in order to solve the problem of too much subjectivity, different modulation system, various of electromagnetic signals and great calculation difficulty in indicator extraction by using conventional electromagnetic environment measurement method. Proposed fractal theory and mathematical morphology theory is applied on the region of the electromagnetic environment to characterize the complexity of standard. First, we use basic principle of the area signal combining several radiation sources to model the receiving electromagnetic signals synthesized at one point, the fractal dimension calculation method based on mathematical morphology is investigated, and then applied to calculating the electromagnetic environment complexity index. The calculation results indicate that this method can provide favorable information to distinguish the complexity of region of the electromagnetic environment in both space and time.
Key words:    electromagnetic environment    mathematical morphology    complexity    fractal theory    fractal dimension   
收稿日期: 2016-03-03     修回日期:
DOI:
基金项目: 国家自然科学基金(61571368)资助
通讯作者:     Email:
作者简介: 郭淑霞(1965-),女,西北工业大学副教授,主要从事复杂电磁环境模拟的研究。
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