Signal processing algorithms for multichannel integrated engines complex diagnostics for automobiles and tractors
https://doi.org/10.51187/0135-3152-2021-1-6-15
Abstract
Introduction (problem statement and relevance). The technical state of machines undergoes changes during their life cycle. The qualitative determination of the technical condition of components, assemblies and systems of engines requires not only the application of modern control methods that provide reliable results, but also the use of high-performance specialized diagnostic equipment for the timely detection of faults to increase the reliability and service life of machines.
The purpose of the study was to substantiate the architecture of an integrated system of vibroacoustic and thermal diagnostics, which would make it possible to assess the residual life of systems, assemblies and mechanisms of diesel engines in real time.
Methodology and research methods. The modern methods of collection and computer processing of signals from various types of sensors, as well as wavelet functions and digital image processing were used in the study.
Scientifi c novelty and results. Algorithms for calculating and processing the analytical ensemble (including scaleograms and histograms) of the data fl ow have been developed and used in an integrated system of complex diagnostics to identify defects in automotive engines and detect the moments of their origin.
Practical signifi cance. The proposed algorithms made it possible to diagnose malfunctions and calculate the residual resource of automotive engine units in real time, display the dynamics of signal changes on the display, process user requests and form a protocol for changing the diesel state picture during its operation.
About the Authors
V. E. TarasenkoBelarus
Tarasenko V.E., PhD (Eng), associate professor
Minsk 220023
O. Ch. Rolich
Belarus
Rolich O.Ch., PhD (Eng), associate professor
Minsk 220013
O. A. Yakubovich
Russian Federation
Yakubovich O.A., PhD (Eng)
Moscow 127238
A. V. Kozlov
Russian Federation
Kozlov A.V., D.Sc. (Eng)
Moscow 125438
References
1. Miklush V.P., Dunaev A.V., Tarasenko V.E., Karpovich S.K., Zhdanko D.A., Lisay N.K. [Reliability management of agricultural machinery by diagnostic methods and tribotechnics]. Minsk, BGATU Publ., 2019. 392 p. (In Russian)
2. [GOST 23435-79. Technical diagnosis. Piston internal combustion engines. Nomenclature of diagnosis parameteres]. Moscow, IPK Izdatel’stvo standartov Publ., 1979. 11 p. (In Russian)
3. Shilo I.N., Tolochko N.K., Romanyuk N.N., Nukeshev S.O. [Intelligent technologies in the agro-industrial complex]. Minsk, BGATU Publ., 2016. 336 p. (In Russian)
4. [Recommendations for the implementation of a diagnostic system for managing the state of diesel locomotives and diesel trains based on the results of oil analysis. 2019]. Available at: http://osjd.org/dbmm/ download?vp=51&load=y&col_id=2066&id=1542 (accessed 09 December 2020). (In Russian)
5. Nikitchenko S.L., Aleksenko N.P., Kotovich A.V., Oleynikova I.A. [Resource-saving control of processes of exploitation and technical service of agricultural machinery]. Don agrarian science bulletin, 2018, no. 4 (44), pp. 57–65. (In Russian)
6. [GOST R 56875-2016. Information technologies. Comprehensive and integrated security systems. Standart requirements for the architecture, hardware and software intelligent monitoring systems to ensure the safety of enterprises and territories]. Moscow, Standartinform Publ., 2019. 45 p. (In Russian)
7. Barelli L., Bidini G., Buratti C., Mariani R. Diagnosis of internal combustion engine through vibration acoustic pressure non - intrusive measurements. Applied Thermal Engineering, 2010, no. 29 (8-9), pp. 1707–1713.
8. Ftoutou E., Chouchane M. (2018) Injection Fault Detection of a Diesel Engine by Vibration Analysis. In: Haddar M., Chaari F., Benamara A., Chouchane M., Karra C., Aifaoui N. (eds) Design and Modeling of Mechanical Systems–III. CMSM 2017. Lecture Notes in Mechanical Engineering. Springer, Cham. https://doi. org/10.1007/978-3-319-66697-6_2.
9. Chen J., Eng B., Eng M. Internal Combustion Engine Diagnostics Using Vibration Simulation / School of Mechanical and Manufacturing Engineering The University of New South Wales, 2013.
10. Rolich O.Ch., Tarasenko V.E., Ivashko V.S. [Thermal control of engine operation based on statistical analysis of bolometer signals]. Izobretatel’, 2019, no. 2-3, pp. 40–44. (In Russian)
11. Rolich O.Ch., Tarasenko V.E. [Multichannel integrated system of vibroacoustic and thermal diagnostics of diesel engines]. Agropanorama, 2019, no. 5, pp. 42–45. (In Russian)
12. Gonsales R., Vuds R. [Digital image processing]. Moscow, Tekhnosfera Publ., 2005. 1072 p. (In Russian)
13. Getmanov V.G. [Digital signal processing]. Moscow, NRNU MEphI Publ., 2010. 232 p. (In Russian)
Review
For citations:
Tarasenko V.E., Rolich O.Ch., Yakubovich O.A., Kozlov A.V. Signal processing algorithms for multichannel integrated engines complex diagnostics for automobiles and tractors. Trudy NAMI. 2021;(1):6-15. (In Russ.) https://doi.org/10.51187/0135-3152-2021-1-6-15