Automated system for monitoring the navigation equipment state as a means of information support

2021 ◽  
Author(s):  
V. L. Martynov ◽  
I. O. Shcherbakova ◽  
I. L. Skripnik ◽  
Yu. G. Ksenofontov ◽  
T. T. Kaverzneva
Author(s):  
Vladimir Yurievich Plonskiy ◽  
Tamara Balabekovna Chistyakova

The article addresses the problem of redistribution of warehouse resources when working in a virtual organization or when changing the logistics structure of the enterprise. A two-stage model of providing warehouse resources to a common access to participants of a virtual en-terprise is considered. An automated system for managing redistribution of resources for the stage of disconnecting from a virtual enterprise or when closing your own warehouses was developed. A description of the control object - a distributed warehouse system of an industrial enterprise specializing in the production of sheet metal. A formalized description of the technological process for the production of cold-rolled steel, including the stages of stockpiling, has been developed. The task of managing the distribution of resources is posed, the functional structure of the software complex is designed. Information, mathematical and algorithmic support for solving the problem of redistributing resources is presented. The architecture of information support includes a database containing regulatory and reference information and document management of the enterprise. The database information is used by the algorithmic support of four functional modules: management of normative and reference information, management of receipts and sales, management of warehouse movements, management of multi-turn packaging. The result of the work is presented by the system of dynamic redistribution of warehouse resources and implemented on the 1C: Enterprise platform, which allows solving the problems of the operational movement of material resources between the enterprise’s warehouses, also under the conditions of the virtual enterprise functioning. Absolute and relative distribution criteria are formed. The first group includes absolute criteria: volume, quantity, amount, weight. The second group consists of relative distribution criteria: quantity/volume, amount/volume, weight/volume. Testing the system using the example of criteria from each group showed the operability of all types of support using the example of a warehouse complex of an enterprise manufacturing metal rolling. Flexible customizable system structure allows you to expand the application of the proposed algorithmic support to other types of resources.


2018 ◽  
Vol 183 ◽  
pp. 01024
Author(s):  
Anatoly Bragov ◽  
Sergey Isaev ◽  
Sergey Kapustin ◽  
Alexander Konstantinov ◽  
Andrey Lomunov

The problems of creation of an automated system for obtaining, processing and storing experimental information on the physical and mechanical properties of structural materials, building materials and various soil media used to provide information support for automated computing systems for analysis of strength and design of structures are discussed. The developed database is focused on studying the effects of the behavior of structural materials under highly parametric influences of force, temperature and other physical fields, as well as on equipping and experimental substantiation of mathematical models describing these effects. In the proposed variant, the database is implemented as a client-server application executed on the Microsoft.Net Framework using a powerful database management system MS SQL Server. The content of the created bank is made up of sections of primary information, material properties and material models. In order to automate the processing of data at all stages of information conversion, a special “Desktop” subsystem is included in the bank, which allows aggregating data obtained from several different experiments, correcting the selected data, processing and converting it. Processing and transformation of data in the subsystem “Desktop” can be carried out either in manual mode or on the basis of special algorithms using appropriate mathematical methods.


Author(s):  
Mykola P. Denysenko

The article discusses the issues of modern electronic technologies implementation in managing integrated processes in the customs and logistics services sector in Ukraine. It is argued that collection and processing of large amounts of information are hardly possible without the use of latest information technology advancements. It has been verified that to operate effectively, the "Electronic Customs" should involve close interaction between all its subsystems, such  as electronic declaration; electronic document management; risk analysis and risk management; transit control delivery; single interdepartmental automated system for collecting, storing and processing information; implementation of fully automated government control; unified database of regulatory and reference documentation used for customs purposes; information support for audit and law enforcement activities. The research findings have revealed a number of benefits of using the electronic declaration pattern, in particular, it contributes to boosting trade, reducing the time period for customs control, eliminating of subjective factors while handling customs procedures through the use of online prior notification and preliminary electronic customs declaration in the frameworks of customs clearance of goods and customs documents and goods delivery. Ultimately, building a multifunctional integrated system of "Electronic Customs" is focused towards better facilitating and enhancing the customs units performances by speeding up customs control and customs clearance procedures, improving the public service quality in the area government customs regulation, mitigating the risk of any illegal actions and corruption along with ensuring and enhancing the customs services security in Ukraine, contributing to further development, adaptation and successful harmonization of information systems of the State Customs Service of Ukraine to the European Union standards and good practice.


Author(s):  
Olga Maslennikova ◽  
Vladimir Petelyak

The article is devoted to the results of an actual study, the purpose of which was to develop and implement design solutions for adaptively supporting configurations of the “1C: Enterprise 8.3” platform for subsequent practical application in the development of typical configurations for solving applied problems of small and medium-sized enterprises. The relevance of the study is determined by several positions. Firstly, the introduction of information technologies in the most important sectors of the economy helps to increase labor productivity, improve the overall investment climate in Russia, and helps to reduce the dependence of the country’s economy on commodity exports. Secondly, the low degree of realization of the potential of boxed solutions is due to the fact that many enterprises relate to the implementation and subsequent maintenance of such solutions as technical projects, not taking into account their business component. Thirdly, in some cases, when purchasing a replicated solution, it needs to be adapted to business requirements and the new IT infrastructure. Adaptation is carried out at the implementation stage or at the stage of supporting the implemented solution. However, the success of such work depends not only on the implementation and support specialists, but also on the availability of descriptions of specific rules, actions, and work that must be performed. At the same time, a lack of logically structured recommendations on their adaptation after acquisition and implementation is noticeable. The study took place in two stages. At the theoretical and methodological stage, a study of the subject area was carried out. The use of structural and object-oriented analysis and design tools made it possible to analyze the business processes of transferring data from the existing BOSS-Kadrovik automated system (AS) to 1C: ZUP, as well as the process of writing off material balances from account 10 to “1C: Accounting 3.0”, identify problem areas (analysis of IDEF0 functional models) and formulate the image and boundaries of the project (requirements model in the form of a use case diagram – Use Case). Selected adaptive support options were determined in accordance with the support rules recommended by 1C when implementing standard implementation technology. For the “1C: Salary and Enterprise Management 3.1” configuration, it was decided to develop a configuration extension, for adapting the “1C: Accounting 3.0” configuration, the creation of external processing. The design phase of work on the topic of this study involved the development of design solutions for the adaptation of the indicated configurations. At the same time, data models were developed at the logical and physical levels, the requirements for information support in the form of database directories were formulated. In addition, the dynamic component of the solutions being developed was examined, namely, the transitions of some objects from one state to another when fulfilling the selected precedents and the results of the state change. For these purposes, a special type of UML diagram technique was used – activity diagrams. Implementation of design solutions for adaptive configuration support was carried out on the 1C: Enterprise 8.3 platform. Testing the implemented solutions yielded positive results. In addition, the cost of adaptive support was calculated. In the calculation, the time norms for the configuration stage proposed by 1C were taken into account.


Author(s):  
Alexander Klevtsov ◽  
Vladislav Inyushev

Safety assessment of Instrumentation and Control systems (I&C systems) of NPP is performed during expert reviews of nuclear and radiation safety in the framework of the licensing process at all life cycle stages of I&C systems. Life cycle stages of NPP I&C systems, which are determined by current guides, rules, and standards of Ukraine, are considered in the chapter. A short overview of the main principles of safety regulation of nuclear facilities, licensing, and expert review of nuclear and radiation safety is presented. Specific safety assessments of NPP I&C systems at different life cycle stages are analyzed (in particular, a list of documents proving NPP I&C safety that should be submitted for expert review at each stage is given). Such assessment is a labor-intensive process that requires processing considerable amounts of a variety of information. Hence, it is reasonable to provide experts with information support for assessing the safety of NPP I&C systems. The chapter gives suggestions and examples of practical implementation of the automated system for support of expert activities and considers the knowledge base for I&C systems.


Author(s):  
Э. Д. Алисултанова ◽  
Н. А. Моисеенко ◽  
И. Р. Бериев ◽  
А-Г. А. Тарамов

В статье рассматриваются актуальные проблемы информационного сопровождения ведения эффективных контрактов в высших учебных заведениях с целью совершенствования системы оплаты труда педагогических работников. Проводится анализ программнотехнического обеспечения автоматизированной системы подачи эффективного контракта для преподавателей и сотрудников. В ходе исследования определены структурные элементы разрабатываемого веб-приложения и схема их взаимодействия. The article discusses topical problems of information support for maintaining effective contracts in higher educational institutions in order to improve the system of remuneration of teachers. The analysis of the software and hardware of the automated system for filing an effective contract for teachers and staff. In the course of the study, the structural elements of the developed web application and the scheme of their interaction were determined.


2021 ◽  
Vol 295 ◽  
pp. 05025
Author(s):  
Larisa Gagarina ◽  
Julia Shevnina ◽  
Andrew Chirkov

This article talks about the opportunity of possibly using a specialized automated system for information support of the implementation of the educational process in the interests of sustainable development at university. The usage of the system will allow to increase the educational efficiency of the specialists in the field of ecology, sociology and economics using integration and implementation of resources, experience and readymade sustainable development projects into the educational process by experts, teachers, partners and groups of scientists. Besides, the organization of interaction in the system between all project participants will help develop and strengthen horizontal links between them. The relevance of the implementation of the social component in such systems is shown.


Author(s):  
Andrii Lytvynchuk ◽  
◽  
Hanna Tereshchenko ◽  
Andrii Kyrianov ◽  
Ivan Gaiduk ◽  
...  

The purpose of the article is to study current trends and ways of improving information support for the functioning of an inclusive education system in Ukraine. The automated system of inclusive resource center (AS «IRC») is defined as a set of software and hardware, based on information and telecommunication technologies provide for the creation of a single integrated information space in inclusive education for the processing of the information generated by the operation of the AS «IRC» and their information support. It is determined that through AS «IRC» teachers of general secondary education institutions and preschool institutions have the opportunity to compile individual development programs for children with special educational needs (SEN), using the findings previously developed by the experts of the inclusive resource centre. EMIS features are described in Ukraine, which operates by collecting information on enrolment, attendance, grade repetition, expulsion from school and graduation. A template is provided for the minimum recommended set of questions to identify children with SEN. Such monitoring makes it possible to identify and detail the difficulties faced by children / teachers, in contrast to the exclusive identification of disability (a certain nosology that is medically confirmed). The development of an inclusive education system in Ukraine is moving towards ensuring the availability and quality of educational services for children with SEN, which aims to improve the quality of information support. In the process of improving the functioning of the AS «IRC» indicators of inclusive education, it is necessary to ensure an organic combination of data already contained in the system with the data set (indicators) that will be collected to assess the effectiveness of educational services in the inclusive education segment. It is substantiated that data sets on the development of inclusive education should be clearly and consistently defined, and should include a wide range of information on children with SEN.


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