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Tytuł artykułu

Mobile application for remote monitoring and predicting risk of damage of the technical system’s components

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This article focuses on the aspects of the design of mobile applications for remote monitoring and forecasting risks of failure of technical systems components. The paper includes description of the characteristics of user interface design and interaction experience with proposed mobile remote monitoring applications. It describes development of an logical database model for mobile application, grounded the choice of database management system for database model development. The article describes the results of developed use case, class and activity diagrams, mobile application project with generalized algorithm, modular structure of the software implementation.
Rocznik
Strony
19--29
Opis fizyczny
Bibliogr. 20 poz., rys.
Twórcy
  • Faculty of Information Technologies, Odesa National Maritime University, Odesa, Ukraine
  • Faculty of Information Technologies, Odesa National Maritime University, Odesa, Ukraine
autor
  • Faculty of Information Technologies, Odesa National Maritime University, Odesa, Ukraine
autor
  • Faculty of Information Technologies, Odesa National Maritime University, Odesa, Ukraine
Bibliografia
  • [1] Аксенов, К.В.: Обзор современных средств для разработки мобильных приложений. Новые информационные технологии в автоматизированных системах, no. 17, 2014, pp. 508-513.
  • [2] Голощапов, A.Л.: Google Android: программирование для мобильных устройств. СПб.: БХВ-Петербург, 2011.
  • [3] Майорова, Е.С., Ошурков, В.А., Цуприк, Л.Е.: Современное состояние средств разработки мобильных приложений на платформах iOS, Android и Windows Phone. Перспективы науки и образования, no. 4 (16), 2015, pp. 83-87.
  • [4] Терехов, A.Н., Оносовский, В.В.: Технология разработки мобильных онлайн сервисов. Конференция CEE-SECR, 2011, pp. 1-2.
  • [5] Соколова, В.В.: Разработка мобильных приложений. Томск: Изд-во Томского политехнического университета, 2011.
  • [6] Ableson, W. F., Sen. R., King C.: Android in action. Manning Publications, 2011.
  • [7] Burnette, E.: Hello, Android: introducing Google's mobile development platform. Pragmatic Bookshelf, 2010.
  • [8] Fling, B.: Mobile design and development: practical concepts and techniques for creating mobile sites and web apps. O'Reilly Media, 2009.
  • [9] To, N., Steele J.: The Android developer's cookbook: building applications with the Android SDK (Developer's Library). Addison-Wesley Professional, 2010.
  • [10] Eslambolchilar, P., Murray-Smith R.: Control centric approach in designing scrolling and zooming user interfaces. International Journal of Human-Computer Studies, no. 66 (12), 2008, pp. 838–856.
  • [11] Salvucci, D. D.: Rapid prototyping and evaluation of in-vehicle interfaces. ACM Transactions on Computer-Human Interaction, no. 16 (2), 2009, pp. 1–33.
  • [12] Flood, D., Harrison, R., Duce, D., Iacob, C.: Evaluating Mobile Applications: A Spreadsheet Case Study. International Journal of Mobile Human Computer Interaction (IJMHCI), no. 4, 2013, pp. 37–65.
  • [13] Axtell, C., Hislop, D., Whittaker, S.: Mobile technologies in mobile spaces: findings from the context of train travel. International Journal of Human Computer Studies, no. 66 (12), 2008, pp. 902–915.
  • [14] Cassimatis, N. L., Bello, P., Langley, P.: Ability, Parsimony and Breadth in Models of Higher-Order Cognition. Cognitive Science, no. 33 (8), 2008, pp. 1304–1322.
  • [15] Anderson, J. R., Lebiere, C.: The Newell Test for a theory of cognition. Behavioral and Brain Sciences, no. 26, 2003, pp. 587-640.
  • [16] Рудниченко, Н. Д., Вычужанин, В. В.: Информационная когнитивная модель технологической взаимозависимости сложных технических систем. Информатика и математические методы в моделировании, no. 3, 2013, pp. 240–247.
  • [17] Rudnichenko, N., Boyko, V., Kramskoy, S., Hrechukha, Y., Shibaeva, N.: Concept implementation of decision support software for the risk management of complex technical system. Advances in Intelligent Systems and Computing, No. 512, 2016, pp. 255-269.
  • [18] Vychuzhanin, V., Rudnichenko, N., Boyko, V., Shibaeva, N., Konovalov, S.: Devising a metod for the estimation and prediction of technical condition of ship complex systems. Eastern-European Journal of Eenterprise Technologies, No. 6/9 (84), 2016, pp. 4-11.
  • [19] Barron, A. R.: Neutral net approximation. In Proc. 7th Yale Workshop on Adaptive and Learning Systems (K.S. Narendra, ed.). Yale University, New Haven, 1992, pp. 69-72.
  • [20] Girosi, F., Poggio, T.: Networks and the best approximation property. Biological Cybernetics, no. 63, 1990, pp. 169-176.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-12fd27ba-a4fa-4b7e-8271-408df190a062
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