PCNC research and development laboratory
Search:
 

The list of some scientific publications of laboratory collaborators

Publications in central periodical scientific-technical journals

 2009

  65. Martinov G.M., Martinova L.I. The analysis of numerical control systems presented at Metal-processing Technoforum 2009 International Exhibition, their novelty and features  // Avtomatizacija v promyschelenosti. 2009. No 12. P. 59–65.  
  64. Martinov G.M., ... Round table. On industrial automation specialist training: challenges and the ways to surmount them  // Avtomatizacija v promyschelenosti. 2009. No 12. P. 36–44.  

2005

  48.Martinov G., Kozak N. PLC Components Integration Principles by the Example of 3D-Scene Graphical Editor // Control Systems and Information Technology, 2007, vol. 2(28), p. 88-92.  
  41. Martinov G. M., Sosonkin V. L. Perspective Technologies of the Development of Software of Control Systems: Use of Regular Expressions  
 

40. Sosonkin V. L., Martinov G. M. Architectonick of Digital Tracking Drives of Technological Machines Supplies // Mehatronika, avtomatizacija, upravlenie. 2005. No 10. P. 24-30. 

 

39. Sosonkin V. L., Martinov G. M. Methods of the Development of Controlling Program of Numerical Program Control in Accordance with Norm ISO 14649 Step-NC (Standard for the Exchange of Product model data for NC) // Mehatronika, avtomatizacija, upravlenie. 2005. No 6. P. 45-52.

38. Sosonkin V. L., Martinov G. M. Latest trends in numerical control system architectures // Avtomatizacija v promyschelenosti. 2005. No 4. P. 3–9.

37. Martinov G. M., Sosonkin V. L. Formalization of Data Step-NC of the Format: Phase of UML Construction of Mode // Mehatronika, avtomatizacija, upravlenie. 2005. No 1. P. 49-56.

2004

36. Sosonkin V. L., Martinov G. M. The Conceptual Device of a Complex of the Industrial Standards for Numerical Program Management of the Equipment ISO 13649 STEP-NC (Standard for Exchange of Product Model Data for NC) // Mehatronika, avtomatizacija, upravlenie. 2004. No 8. P. 37-44.

 

35. Sosonkin V. L., Martinov G. M. State of the art in numerical control system architectures: analysis // Avtomatizacija v promyschelenosti. 2004. No 5. C. 33–39.

34. G.M. Martinov, V.L. Sosonkin. Principles of implementing remote NC terminals for mechatronic systems // Avtotraktornoe elektrooborudovanie. 2004. No 1-2. P. 29-32.

 
2003

33. V.L. Sosonkin, G.M. Martinov. The concept of numerical control for mechatronic systems: the integration, based on the open control and OPC standard //Mehatronika, avtomatizacija, upravlenie. 2003. No 8. P. 12-18.

 

32. V.L. Sosonkin, G.M. Martinov, M.M. Perepelkina. The concept of numerical control for mechatronic systems: SoftPLC virtual controllers for cycle logic of NC machine tools // Pribory i Sistemy Upravleniya (Control Systems and Instruments). 2003. No 7. P. 5-10.

 

31. V.L. Sosonkin, G.M. Martinov. The concept of numerical control for mechatronic systems: the integration, based on the complex of the STEP production standards (Standard for the Exchange of Product model data) // Informacionnye tehnologii v proektirovanii i proizvodstve. - VIMI. 2003. No 2. P. 38-44.

 

2002

30. G.M. Martinov, V.L. Sosonkin. The concept of numerical control for mechatronic systems: technology of component software organization // Avtotraktornoe elektrooborudovanie. 2002. No 5-6. P. 37-44.

 

29. V.L. Sosonkin, G.M. Martinov. The concept of numerical control for mechatronic systems: the analysis of the modern level of architectural schemes in the NC area // Mehatronika, avtomatizacija, upravlenie. 2002. No 7. P. 11-17.

 

28. V.L. Sosonkin, G.M. Martinov. The concept of numerical control for mechatronic systems: problems of cycle-logic control // Avtotraktornoe elektrooborudovanie. 2002. No 4. P. 33-42.

 

27. L.I. Martinova, G.M. Martinov. The practical approach to realization of open-NC-system's modules // Avtotraktornoe elektrooborudovanie. 2002. No 3. P. 31-37.

ðàçìåð ôàéëà: 2,62 Má
rus

26. V.L. Sosonkin, G.M. Martinov. The concept of numerical control for mechatronic systems: the configuration of NC systems. // Mehatronika, avtomatizacija, upravlenie. 2002. No 4. P. 22-24.

 

25. G.M. Martinov, V.L. Sosonkin The concept of numerical control for mechatronic systems: methodic aspects of building open NC systems // Mehatronika, avtomatizacija, upravlenie. 2002. No 2. P. 2-11.

 

23. V.L. Sosonkin, G.M. Martinov. The concept of numerical control for mechatronic systems: specifics of the object-oriented programming // Mehatronika, avtomatizacija, upravlenie. 2002. No 1. P. 30-32.

 

2001

23. G.M. Martinov, V.L. Sosonkin. The concept of numerical control for mechatronic systems: the structure of the programming manual // Mehatronika, avtomatizacija, upravlenie. 2001. No 8. P. 20-27.

 

22. G.M. Martinov, V.L. Sosonkin. The concept of numerical control for mechatronic systems: the technology of object-oriented programming // Mehatronika, avtomatizacija, upravlenie. 2001. No 7. P. 5-9.

 

21. V.L. Sosonkin, G.M. Martinov. The concept of numerical control for mechatronic systems: realizing the diagnostic sub-system // Mehatronika, avtomatizacija, upravlenie. 2001. No 3. P. 2-6.

 

20. G.M. Martinov, V.L. Sosonkin. The concept of numerical control for mechatronic systems: realizing the Man-Machine Interface // Mehatronika, avtomatizacija, upravlenie. 2001. No 4. P. 2-8.

 

19. V.L. Sosonkin, G.M. Martinov. The concept of numerical control for mechatronic systems: realizing the logic control // Mehatronika, avtomatizacija, upravlenie. 2001. No 2. P. 3-7.

 

18. G.M. Martinov, V.L. Sosonkin. The concept of numerical control for mechatronic systems: realizing the motion control // Mehatronika, avtomatizacija, upravlenie. 2001. No 1. P. 9-15.

 

17. V.L. Sosonkin, G.M. Martinov. The universal environment AdvancEd, which is intended to edit, to debug and simulate ISO-7bit flow programs, any versions // Avtotraktornoe elektrooborudovanie. 2001. No 1-2 . P. 41-42.

ðàçìåð ôàéëà: 695 Êá
rus

2000

16. V.L. Sosonkin, G.M. Martinov. The concept of numerical control for mechatronic systems: building the inter-module communication medium // Mehatronika, avtomatizacija, upravlenie. 2000. No 6. P. 2-7.

 

15. G.M. Martinov, V.L. Sosonkin. The concept of numerical control for mechatronic systems: the problem of real-time // Mehatronika, avtomatizacija, upravlenie. 2000. No 3. P. 37-40.

 

14. V.L. Sosonkin, G.M. Martinov. The concept of numerical control for mechatronic systems: the architecture of PCNC systems // Mehatronika, avtomatizacija, upravlenie. 2000. No 1. P. 26-29.

 

13. V.L. Sosonkin Some principles of developing new-generation NC systems // STIN. 2000. No 9. P. 24-29.

 

before 2000

12. V.L. Sosonkin, G.M. Martinov. A new approach to editors of NC flow programs: the universal environment AdvancEd // Informacionnye tehnologii v proektirovanii i proizvodstve. - VIMI. 1999. No 1. P. 80-87.

ðàçìåð ôàéëà: 1,70 Má
rus

11. V.L. Sosonkin, G.M. Martinov. The concept of one-computer NC system, PCNC type // Informatika-maschinostroenie, 1999. No 4. P. 7-16.

 

10. V.L. Sosonkin, G.M. Martinov. The universal environment AdvancEd, which is intended to edit, to debug and simulate ISO-7bit flow programs, any versions // Informatika technologii, 1998. No 3 (21). P. 3-5.

ðàçìåð ôàéëà: 1,46 Má
rus

9. G.M. Martinov. Virtual diagnostic instruments in NC systems // Informatika-maschinostroenie. 1998. No 4. P. 8-12.

 

8. V.L. Sosonkin, G.M. Martinov. The modern notion about the architecture of NC systems, PCNC type // Avtomtizacia proectirovaniya. 1998. No 3. P. 35-39.

ðàçìåð ôàéëà: 2,66 Má
rus

7. V.L. Sosonkin, G.M. Martinov., A.B. Lubimov Interpretation of the dialogue in the windows-interface of control systems // Pribory i Sistemy Upravleniya (Control Systems and Instruments). 1998. No 12. P. 10-13.

ðàçìåð ôàéëà: 1,52 Má
rus

6. U.M. Solometsev, V.L. Sosonkin, G.M. Martinov. Building "personal" NC systems (PCNC), which type is open control // Informationnye technologii i vycheslitelnye systhemy. 1997. No 3. P. 68-76.

ðàçìåð ôàéëà: 2,72 Má
rus

5. V.L. Sosonkin, G.M. Martinov. The concept of NC system, PCNC type, with the open architecture // STIN. 1998. No 5. P. 7-12.

ðàçìåð ôàéëà: 1,89 Má
rus

4. G.M. Martinov. The open NC system based on the common software bus // Avtomobilnaya promishlennost. 1997. No 4. P. 31-34.

 

3. V.L. Sosonkin, G.M. Martinov. Principles of building NC systems with the open architecture // Pribory i Sistemy Upravleniya. 1996. No 8. P. 18-21.

ðàçìåð ôàéëà: 1,51 Má
rus

2. V.L. Sosonkin The concept of "personal" real-time control systems // Pribory i Sistemy Upravleniya. 1995. No 7. P. 17-20.

 

1. V.L. Sosonkin, G.M. Martinov. The concept of the geometrical ISO-processor for NC systems // STIN. 1994. No 7. P. 12-20.

ðàçìåð ôàéëà: 2,72 Má
rus

 

Other publications

1. G.P. Mitin, S.V. Rybnikov. The architecture of NC systems with intelligent controllers //Mehatronika, avtomatizacija, upravlenie. No 2. 2003.

 

2. E.A. Emeljanova. The concept of the flexible user interface of the NC system. //Mehatronika, avtomatizacija, upravlenie. No 2. 2003.

 

3. A.I. Liverko. Implementation of complicated standard cycles for NC machine tools //Mehatronika, avtomatizacija, upravlenie. No 9. 2003.

 

4. D.A. Babak, A.V. Romko Choosing software and hardware concepts for cycle-logic control //Mehatronika, avtomatizacija, upravlenie. No 9. 2003.

5. A. Yu. Popov Content management Systems // Ìåòàëëîñíàáæåíèå è ñáûò. No 10. 2004.

ðàçìåð ôàéëà: 695 Êá
rus