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AUTOMATED MULTIFUNCTIONAL INSTALLATION FOR THE RESEARCH, DEVELOPMENT AND TESTING OF INTERNAL COMBUSTION ENGIN

https://doi.org/10.30724/1998-9903-2018-20-9-10-138-145

Abstract

At present, testing and tuning of electronic engine control systems is a long and laborious process, since it is necessary to fulfill all safety requirements, ensure power and environmental parameters and fuel efficiency of the engine being developed. The article describes a multifunctional automated installation for tuning up an electronic control system, speeding up the calibration and modification of algorithms for electronic control systems of an internal combustion engine, and to work off reactions to occurring malfunctions.

About the Author

M. F. Sadykov
Kazan State Power Engineering University, Kazan
Russian Federation
PhD (physical&mathematical) sci., Associate Professor, Head of the Department of «Theoretical bases of electrical engineering»


References

1. Sadykov M.F., Garayev V.M., Yaroslavsky D.A., Murataev I.A., Gainutdinov A.R. Analysis of modern approaches to accelerate the development of electronic control units of internal combustion engines // Herald of Kazan state technical University. 2013. № 2-2. С. 52–55 (In Russian).

2. Testing device for electronic control unit of internal combustion engine: pat. 154816 RU / Sadykov M.F., Murataev I.A., Yaroslavsky D.A., Gainutdinov A.R., Garayev V.M.; KSPEU – № 2014145064/08; pub. 10.09.2015. 10 p.

3. Sadykov M.F., Golenishchev-Kutuzov A.V., Andreev N.K. The use in the systems of auto-pilot transport of software and hardware emulation engine and transmission // Proceedings of the higher educational institutions. Energy sector problems. 2018 №5-6. P.67–74.

4. Program emulator of an internal combustion engine with a graphical programming: pat. 2014611795 RU / Sadykov M. F., Murataev I. A. Zakieva R. R., Gainutdinov A. R.; KSPEU. – № 2013661602; pub. 20.03.2014.

5. Sadykov M.F., Garayev V.M., Yaroslavsky D.A., Murataev I.A., Gainutdinov A.R. Hardwaresoftware emulator of internal combustion engine with graphic programming of the algorithm // Herald of Kazan Technological University. 2014. V. 17, № 6. P. 293–294.

6. Sadykov M.F., Murtaev I.A., Yaroslavsky D.A., Gainutdinov A.R., Zakieva R.R. Diagnostics of the condition of the internal combustion engine in the parameters of mechanical losses // Energy Of Tatarstan. 2014. № 3-4 (35-36). P. 65–68.

7. Berezovsky A.B., A. Maksimov V.A., Sadykov M.F. Study of the influence of the electronic control unit signal characteristics on the operation of the hydraulic gas distribution mechanism // Actualscience. 2015. V. 1, № 3 (3). P. 68–69.

8. Berezovsky A.B., Maksimov A.V., Gataullin N.A. Zimina L.A., Sadykov M. F., Gumerov I.F., Valeev D.Kh. Experimental study of gas distribution mechanism with electrohydraulic drive // Dvigatelestroyeniye. 2016. № 1. P. 11–17.

9. Sadykov M., Kuchev S.M., Murataev I., Yaroslavskiy D. KAMAZ engine emulation system for electronic control system testing // International Journal of Applied Engineering Research. 2015. V. 10, № 24. P. 45228–45131.

10. Yaroslavsky D.A., Ivanov D.A., Goryachev M.P., Gaynutdinov A.R., Sadykov M.F. Selection of real time operating system for wireless device // Bulletin of Kazan State Technical University named after. A.N. Tupolev. 2016. V. 72, № 4. P. 95–100.


Review

For citations:


Sadykov M.F. AUTOMATED MULTIFUNCTIONAL INSTALLATION FOR THE RESEARCH, DEVELOPMENT AND TESTING OF INTERNAL COMBUSTION ENGIN. Power engineering: research, equipment, technology. 2018;20(9-10):138-145. (In Russ.) https://doi.org/10.30724/1998-9903-2018-20-9-10-138-145

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ISSN 1998-9903 (Print)
ISSN 2658-5456 (Online)