Strategy of building a wireless mobile communication system in the conditions of electronic counteraction

Q3 Computer Science
A. Serkov, O. Kasilov, Bogdan Lazurenko, Volodimir Pevnev, Karyna Trubchaninova
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引用次数: 0

Abstract

The subject of research in this article is the process of building a mobile communication system that operates under electronic countermeasures. The aim is to develop recommendations for building a wireless mobile communication system that operates effectively in a complex interfering electromagnetic environment. The strategy for building a mobile wireless communication system is based on the use of a grouping of low-altitude UAVs with ultra-wideband signal technology circulating in control and communication channels, with the integration of artificial intelligence elements into its structure. The objective of this study is to ensure the stable and secure operation of a wireless mobile communication system despite electronic countermeasures. The methods of analytical, temporal positional pulse coding, and fuzzy logical inference were used to make decisions on the transfer of service in the network. The following results were obtained. A strategy for building a wireless mobile communication system despite electronic countermeasures has been developed. It is shown that in order to obtain high noise immunity of control and communication channels and to protect information from interception, wireless ultra-wideband communication technology should be used.  This will provide large volumes and speeds of information transmission. A technical solution for the design of an ultra-wideband transceiver antenna system is proposed. Moreover, it is recommended to use the results of data processing in a fuzzy decision-making system for the transfer of service between mobile network nodes in conditions of interference. Conclusions. The scientific novelty of the obtained results is as follows. The use of ultra-wideband channels makes it possible to increase the number of control and communication channels in a wireless mobile system almost unlimitedly. The preliminary distribution of orthogonal codes between the channels realizes the process of control and communication without the interception of information and mutual interference. The use of the time-position-pulse coding method prevents the occurrence of intercharacter distortions of the encoding ultrashort pulses. This also reduces the level of distortion of information signals caused by multipath propagation, which guarantees the security of information in the system. The use of a fuzzy decision-making system for the transfer of services between mobile network nodes allows dynamically changing the network topology in real time and maintaining high quality of service under electronic countermeasures.
电子对抗条件下无线移动通信系统的构建策略
本文研究的主题是在电子对抗下构建移动通信系统的过程。目的是为建立在复杂干扰电磁环境中有效运行的无线移动通信系统提出建议。构建移动无线通信系统的战略是基于在控制和通信通道中使用一组具有超宽带信号技术的低空无人机,并将人工智能元素融入其结构中。本研究的目的是在电子对抗的情况下,确保无线移动通信系统的稳定和安全运行。采用分析方法、时间位置脉冲编码方法和模糊逻辑推理方法对网络中的业务转移进行决策。得到了以下结果:一种不顾电子对抗而建立无线移动通信系统的策略已经被开发出来。研究表明,为了获得控制信道和通信信道的高抗噪性,保护信息不被截获,必须采用无线超宽带通信技术。这将提供大容量和速度的信息传输。提出了一种设计超宽带收发天线系统的技术方案。此外,建议使用模糊决策系统中的数据处理结果,用于干扰条件下移动网络节点之间的业务转移。结论。所得结果的科学新颖性如下。超宽带信道的使用使得在无线移动系统中几乎无限制地增加控制和通信信道的数量成为可能。在信道间初步分配正交码,实现了控制和通信的过程,避免了信息截获和相互干扰。采用时间-位置脉冲编码方法可以防止编码超短脉冲时出现字符间失真。这也降低了信息信号因多径传播而产生的失真程度,保证了系统中信息的安全性。利用模糊决策系统在移动网络节点之间进行业务转移,可以实时动态地改变网络拓扑结构,并在电子对抗下保持高质量的服务。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Radioelectronic and Computer Systems
Radioelectronic and Computer Systems Computer Science-Computer Graphics and Computer-Aided Design
CiteScore
3.60
自引率
0.00%
发文量
50
审稿时长
2 weeks
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