Structural and functional analysis of reconnaissance and fire system and decomposition of its functions and subsystems

O. Maistrenko, O. Karavanov, A. Shcherba
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引用次数: 1

Abstract

It is established that the role of reconnaissance and fire systems in the implementation of enemy fire damage in military conflicts occurring at the beginning of the XXI century. Increased  to 75%. However, it was found that the effectiveness of these systems depends on the quality of their equipment. The main factors that are often not taken into account in the acquisition are the possibility, interoperability, stability of each element, the impact of elements on the stability of each other and the functioning of the RVS as a whole. The analysis of recent research and publications has shown that as of today, the approaches to determining the composition of reconnaissance fire systems taking into account these factors are not justified. Given the above, it was decided to conduct a structural and functional analysis of the reconnaissance fire system and the decomposition of its functions and subsystems. To this end, based on the method of cluster analysis, an algorithm for combining a set of tasks performed by reconnaissance and fire systems into groups has been developed and substantiated. The method of expert evaluation was used to obtain substantiated data on the implementation of such a merger. According to the proposed algorithm, the main tasks were first identified, which involve reconnaissance and fire systems. Subsequently, an expert group was formed and the coefficient of relative competence of each member of the expert group was determined. The experts were then asked to combine the identified tasks according to their characteristics into an arbitrary number of groups. After processing the opinions of experts, 10 characteristic groups were identified. Finally, the experts were asked to combine the obtained groups in such a way that each association consisted of similar objects and the objects of different associations differed significantly. The results of the work revealed the functional interconnectedness of the tasks, processes and subsystems of the reconnaissance and fire system. It is also established that a typical reconnaissance fire system will consist of three subsystems (control, reconnaissance and fire influence), which perform specific functions for each of them.
侦察消防系统的结构和功能分析,并对其功能和子系统进行分解
在二十一世纪初发生的军事冲突中,侦察和火力系统在实施敌方火力破坏中的作用是确定的。增加到75%。然而,人们发现,这些系统的有效性取决于其设备的质量。在采购中往往没有考虑到的主要因素是每个元素的可能性、互操作性、稳定性、元素对彼此稳定性的影响以及RVS作为一个整体的功能。对最近的研究和出版物的分析表明,截至今天,考虑到这些因素确定侦察消防系统组成的方法是不合理的。鉴于上述情况,决定对侦察消防系统进行结构和功能分析,并对其功能和子系统进行分解。为此,在聚类分析方法的基础上,开发并验证了一种将侦察和消防系统执行的一组任务组合成组的算法。采用专家评价的方法,获得了有关合并实施的实证数据。根据提出的算法,首先确定了主要任务,包括侦察和消防系统。随后,组成专家组,确定专家组各成员的相对胜任系数。然后,专家们被要求根据他们的特点将这些确定的任务组合成任意数量的组。在对专家意见进行处理后,确定了10个特征组。最后,专家们被要求以这样一种方式组合得到的组,即每个关联由相似的对象组成,不同关联的对象差异显著。工作的结果揭示了侦察和消防系统的任务、过程和子系统的功能相互联系。建立了一个典型的侦察消防系统将由三个子系统(控制、侦察和火灾影响)组成,每个子系统执行特定的功能。
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