Definition of area and center of technological safety in space of conditions of the production system

  • Authors

    • S R. Bakasov
    • A E. Prorokov
    • Yu. N. Matveev
    • V N. Bogatikov
    • B V. Palux
    2018-04-15
    https://doi.org/10.14419/ijet.v7i2.13.12686
  • State Assessment, Safety of Technologies, Area of Safety, Center of Safety, Linear Programming, Preparation and Decision-Making.
  • Abstract. Realization of system of diagnostics of states and management of technological safety in space of states is considered. The technique of definition of the center of safety on the basis of the solution of a problem of linear programming and the two-level system of decision-making on ensuring technological safety is offered. At the first level the center of safety is defined, at the second level the problem of stabilization of process in the field of safe functioning is solved.

     

  • References

    1. [1] Bogatikov V.N. Construction of discrete models of chemical-technological systems. Theory and Practice / Bogatikov V.N, Palyukh B.V. // Apatity: ed. Kola Science Center, 1995. - 164 p. Alekseev V.V. Applications of the method of separation of states to management of technological safety on the basis of the safety index / Alekseev V.V., Bogatikov V.N., Palyukh B.V., Prorokov A.E. // - Tver: TSTU, 2009. - 368 p.

      [2] Alexandrov P. S. Course of analytical geometry and linear algebra. - M.: Science, 1979. - 512 pages.

      [3] Shilov, G. E. Introduction to the theory of linear spaces / G.E. Shilov – M.: World, 1982. – 488 pages.

      [4] Dantzig G.B. Linear Programming and Extensions/ 1963. - 600 p.

      [5] Zade L. The concept of a linguistic variable and its application to the adoption of approximate solutions .- M .: World, 1976.-167 p.

      [6] Pospelov D.A. Situation-dependent control: Theory and practice. - M.: Science, 1986. - 288 pages.

      [7] Melikhov A. N. The situation-dependent advising systems with a fuzzy logic / Melikhov A. N., Bernstein L. S., Korovin S.Ya.//M.: Science, 1990. – 272 pages.

      [8] Fuzzy Logic Toolbox. User’s Guide, Version 2. The MathWorks, Inc., 1999.

      [9] Toichkin N.A. Diagnostics of states and management of technological safety with use of the index of safety (on the example of the shop of boil-off of production of chlorine and a caustic soda). The thesis for a degree of Candidate of Technical Sciences. Apatity – 2006. 215 pages.

      [10] Galushkin A.I. Neuromathematics: methods of the solution of tasks on Neurocomputers / Galushkin A.I., Sudarikov V. A., Shabanov E.V.//Mathematical modeling. Volume 3, number 8. 1991. 93 - 111 pages.

      [11] A Practical Framework for Reliability and Quality Assessment of Power Systems

      [12] M. A. El-Kady, B. M. Alshammari Energy and Power Engineering Vol.3 No.4

      [13] Full-Text HTML Pub. Date: September 27, 2011.

      [14] Stability of Production Planning Problem with Fuzzy Parameters Samir Abdou Abass

      [15] Open Journal of Applied Sciences Vol.2 No.3 Full-Text HTML Pub. Date: September 28, 2012.

      [16] Stukalova, N.A. Simulation model of the technological process of destruction of chemical weapons (sarin and soman) ./ Stukalova NA Matveev Yu.N., Dolzhenko A.B. // Internet-journal "Naukovedenie". 2013, No. 6 (22) [Article identification number in the journal 152TVN613] -M.2013. Access mode: http: //naukovedenie.ru/PDF/152TVN613.pdf (access is free). Stukalova, N.A. Automated control system for technological processes of destruction of chemical weapons / Stukalova N.A. Matveev Yu.N., Dolzhenko A.B. / The Internet-journal "Naukovedenie". 2014, №4 (23) [Article identification number in the journal 54TVN414] М.2014.Remzhim access: http: //naukovedenie.ru/PDF/54TVN414.pdf (access is free).

      [17] Ivashchuk, V. V. Creation of effective algorithms of identification of technological objects of management / V.V. Ivashchuk//Devices and systems: management, control, diagnostics. – 2001.– No. 10. – Page 68-72.

      [18] Simulation Using Sensitivity Analysis of a Product Production Rate Optimization Model of a Plastic Industry Mala Abba-Aji, Vincent Ogwagwu, Bukar Umar Musa

      [19] Open Journal of Energy Efficiency Vol.2 No.3. Full-Text HTML Pub. Date: September 26, 2013

      [20] A Glorious Literature on Linear Goal Programming Algorithms

      [21] Ukamaka Cynthia Orumie, Daniel Ebong American Journal of Operations Research Vol.4 No.2.

      [22] Full-Text HTML Pub. Date: March 25, 2014

      [23] An Alternative Approach for Solving Bi-Level Programming Problems

      [24] Rashmi Birla, Vijay K. Agarwal, Idrees A. Khan, Vishnu Narayan Mishra

      [25] American Journal of Operations Research Vol.7 No.3. Full-Text HTML XML Pub. Date: May 27, 2017

      [26] Determining Efficient Solutions of Multi-Objective Linear Fractional Programming Problems and Application Farhana Akond Pramy, Md. Ainul Islam Open Journal of Optimization Vol.6 No.4. Full-Text HTML XML Pub. Date: December 18, 2017.

  • Downloads

  • How to Cite

    R. Bakasov, S., E. Prorokov, A., N. Matveev, Y., N. Bogatikov, V., & V. Palux, B. (2018). Definition of area and center of technological safety in space of conditions of the production system. International Journal of Engineering & Technology, 7(2.13), 292-296. https://doi.org/10.14419/ijet.v7i2.13.12686