scholarly journals Substantiation of factors and criteria of efficiency evaluation of the military automated control system operation

VUZF Review ◽  
2020 ◽  
Vol 5 (1) ◽  
pp. 71-77
Author(s):  
Ilona Korenivska

The article deals with outcomes of the conducted research, which are valuable for the Armed Forces personnel of all levels involved in the ensuring the military automated control system (MACS) operation. The article is devoted to the urgent issue of efficiency evaluation of the MACS operation. The analysis of existing methods of efficiency evaluation of the MACS operation is conducted; the approaches to the definition of the MACS operation efficiency are analyzed. It was found inconsistencies in the existing methods of efficiency evaluation of the Military Automated Control System and principles of modern Automated Control System operation based on the analysis. The substantiation of the sustainability factor (criteria) as the main factor (criteria) of the efficiency of the aviation and air defense Automated Control System (ACS) operation is conducted in the article. The usage the proposed factor to evaluate the efficiency of the MACS operation allows considering not only the network structural sustainability but also its own sustainability, taking into account the limited bandwidth of the communication system. This approach will help reduce the cost of the Armed Forces of Ukraine to lease digital streams.

2020 ◽  
Vol 4 ◽  
pp. 33-48
Author(s):  
O.G. Dodonov ◽  
◽  
O.V. Nikiforov ◽  
V.G. Putiatin ◽  
◽  
...  

Conceptual design of automated control systems (ACS) is an important stage in their development and creation. The miscalculations made here, as a rule, cannot be compensated in the subsequent project stages. Despite this, at the moment there is no sufficiently developed theory of conceptual design of promising ACS. As a rule, when forming the concept (control space) of a new ACS, either use a proto-type, or fundamentally new conceptual solutions are developed. The paper presents an attempt to develop a methodology for the conceptual design of an automated control system, which expands the designer’s creative capabilities, streamlining his reasoning and reducing the dimension of the synthesis problem. A template is proposed for creating a parametric concept of ACS with its subsequent detailing through the use of the categorical analysis method. The method is demonstrated on the development example of ACS concept by a group of unmanned aerial vehicles (UAV). A constructive scheme of management information, including data groups and relationships between them is considered. Data groups are formed taking into account the multidimensionality of the management process, where aspects (points of view) are generated using the categorical analysis apparatus. The interpretation of 32 categorical subsets is proposed, revealing 32 aspects of the UAV groups usage. On the example of the UAV functioning aspect, concerning the fire and electronic suppression of the enemy’s air defense, performed as an element of combat support for the process of solving the main tasks, the data on the state of the UAV group was detailed. For the formed metric system, groups of information transformation procedures are defined. It is advisable to use the presented results to create adaptive polyaspect special software for ACS by a UAV group.


Author(s):  
O. Fedchenko ◽  
М. Poltorak

The article deals with the integration of the geoinformation framework into a unified automated control system of the Armed Forces of Ukraine. Keywords: control system, geoinformation system, geospatial information, single coordinate space, geoinformation support, operational environment.


2020 ◽  
Vol 10 (2) ◽  
pp. 27-34
Author(s):  
Vоlodymyr Dachkovskyi

To solve the problem of timely provision of military formations (units) with the logistical means (LM), the method of optimization of material flows is proposed in the work. To implement this method, the system of the material flows management, storage and transportation of the logistical means is divided into strategic, operational and tactical levels of the hierarchy, whereby the highest management body has access to the entire management system and database and the lower one only within its responsibility. At each level of the hierarchy, an automated control system is created, which includes subsystems with normative data (set standards of storage of the logistical means, norms of variability of the corresponding nomenclature of spare parts, norms of the working time of samples of weapons and military equipment (WME) to the appropriate type of maintenance and repair, etc.). In the next stage, the accounting of records of the WME samples and the actual availability of the logistical means, which have arrived to the logistics centers of the strategic level, the distribution centers of the operational level and the warehouses of the military formations (units) is entered to the automated control system. During the exploitation of WME samples, the information of the actual consumption of their resource is provided to the automated real-time management system. After that, the automated system compares the actual consumption of the resource of the WME samples with the established standards, which are laid down in the technical documentation and orders, regulations, directives, etc. by the Ministry of Defense and the General Staff. When the time is coming to dispatch the WME sample to the appropriate type of maintenance or repair, the automated system having the logistical means account at all levels of the hierarchy determines at which storage the logistical means data is located and paves the optimal route for their transportation to units or to the warehouses of the lower level of hierarchy. Thus, the use of this method allows to determine the unit in which the appropriate sample of the WME will require maintenance or repair, to determine the necessary nomenclature of logistical means, to provide this unit in advance with the necessary logistical means, which will reduce the time and cost of resources to provide the logistical means to the military formations (units).


2014 ◽  
Vol 0 (10) ◽  
pp. 73-77
Author(s):  
P. P. Tkachuk ◽  
Y. P. Salnyk ◽  
Y. M. Pashchuk ◽  
I. V. Matala

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