REALIZATION OF THE TECHNOLOGY OF DUAL USE OF OUTER SPACE CONTROL MEANS

Pub Date : 2023-08-09 DOI:10.15407/knit2023.04.127
Yu. N. Lavrich, M. I. Bistrov, V. I. Prysiazhnyi, D. V. Pyaskovskyi
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Abstract

Context. The radar means of outer space control are monofunctional systems, despite their potential multifunctionality. To ensure the effective implementation of target functions, only some of the total number of potential functions are used, other existing functions are not studied and as a result, don’t used. The target functions of most existing domestic and foreign radiolocation stations on space control RLS SC are practically reduced only to the control of space objects in different orbits. The obtained information is not fully used, so the new target doesn’t form. As the history of the development of defense complexes shows, in most industrialized countries there are examples of the use of military developments for civilian purposes (spin-off) and civilian developments for military purposes (spin-on). As a result of these synergy processes emphasis on the strategy of double technologies and double innovation increased. Objective. The aim of the work is to study the possibility of introducing an ionospheric channel into the domestic radar station 5N86 Dnipro (Hen House) and expanding its intended use by using most of its functional systems to implement the ionosphere control function. Method. The paper uses a comparative analysis of the main functional systems and technical characteristics of the 5N86 Dnipro radar and non-coherent scatter radars (PHR) of the global ionosphere control network. Results. The main characteristic features of the RLS 5N86 are analyzed and, taking into account the characteristics of the signals, the possibility of using the multifunctionality of the radar to form a new target function for monitoring outer space is substantiated. From an applied point of view, a number of specific scientific and practical solutions are given, aimed at the realization of dual-purpose technology in the implementation of the ionosphere control function by a radar station - both for solving the problems of increasing the own efficiency and for the interests of fundamental science. It is shown that the creation of new target RLS is based on both the use of already existing systems and the introduction of new ones. The importance of the scientific task on the implementation of the ionosphere control function and the possibility of integrating into the global ionosphere control network is substantiated. Conclusions. The presence of scientific and technical developments and the practical experience of the domestic RLS SC developer makes the new target function realization absolutely realistic. The implementation of the double-purpose technology will ensure an effective solution for both applied and fundamental scientific tasks.
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实现技术对外部空间的双重利用控制手段
上下文。外层空间控制的雷达手段是单功能系统,尽管它们具有潜在的多功能。为了保证目标函数的有效实现,只使用了潜在函数总数中的一部分,而对其他现有函数不进行研究,因此不使用。目前国内外大多数空间控制卫星定位站的目标功能实际上都简化为对不同轨道空间物体的控制。获得的信息没有被充分利用,所以没有形成新的目标。正如国防综合体发展的历史所显示的那样,在大多数工业化国家都有将军事发展用于民用目的(附带)和将民用发展用于军事目的(附带)的例子。由于这些协同过程,双技术和双创新战略得到了重视。目标。本工作的目的是研究在国内雷达站5N86 Dnipro (Hen House)引入电离层信道的可能性,并通过使用其大部分功能系统来实现电离层控制功能来扩大其预期用途。方法。本文对5N86 Dnipro雷达与全球电离层控制网非相干散射雷达(PHR)的主要功能系统和技术特点进行了比较分析。结果。分析了RLS 5N86雷达的主要特征,并结合信号的特点,论证了利用该雷达的多功能性形成外太空监测新目标函数的可能性。从应用的角度出发,针对雷达站实现电离层控制功能的双重技术目的,提出了一些具体的科学和实用的解决方案,既解决了提高自身效率的问题,又符合基础科学的利益。结果表明,新目标RLS的创建既基于现有系统的使用,也基于新系统的引入。论证了该科学任务对实现电离层控制功能的重要性和纳入全球电离层控制网络的可能性。结论。科学技术的发展和国内RLS SC开发人员的实践经验使新的目标函数的实现具有绝对的现实性。双重用途技术的实施将确保有效解决应用和基础科学任务。
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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