Preview

RUSSIAN RAILWAY SCIENCE JOURNAL

Advanced search

Operation results of reversible converters of AC electric locomotives VL80R on the Krasnoyarskaya Railway

https://doi.org/10.21780/2223-9731-2019-78-1-27-32

Abstract

The article presents information about faults of reversible converters (RC) of AC electric locomotives of the VL80R series, fixed at the maintenance points of locomotives and locomotive depots of the Krasnoyarskaya Railway for the period 2014 – 2018. Authors provide data on the number of semi-conductor switches, their main parameters and technical characteristics for two types of converters — RC-2200 and RC-4000 operating on VL80<sup>R</sup> electric locomotives. Their influence on the RC construction scheme is shown. Revealed the causes of failures of the RC in the operation of electric locomotives. The role of maintenance of RC in electric locomotive and its monitoring system in ensuring reliable operation is shown as well as the statistical data on the quantitative and qualitative assessment of the types of failures of the RC. The article also shows statistics of changes in the number of converters of each type during the operation of electric locomotives. Information is given on the number of all faulty RCs on VL80R electric locomotives and an analysis of faulty RC-2200 and RC-4000s for a specified time period. The data is presented on the number of RC-2200 and RC-4000 failures per million km of the VL80<sup>R</sup> electric locomotive in terms of one section. Authors carried out analysis of statistics of this type of failure of the RC with reach-through breakdown of the shoulder. Information is given on the number of RCs with the reach-through breakdown of RC shoulders per million km of VL80R electric locomotives. It was concluded that for the period from 2014 to 2018, the number of failing RCs due to dangerous shoulder punctures decreased significantly, which led to a significant reduction in the number of failures of electric locomotives due to this failure. So, for RC-4000 this decrease occurred 5.75 times, and for RC-2200 2.4 times. In addition, the reason for a more significant reduction in the number of failures of electric locomotives with RC-4000 due to its faulty, is that RC-4000 is more modern and contains much fewer semi-conductor switches and additional elements. This increases the reliability of the RC. Thus, the replacement of obsolete RC-2200 with modern RC-4000 provided a reduction in the total number of faults of all RC in 2.3 times; decrease in the number of cases of RC failures per million km of a locomotive in 4 times. 

About the Authors

S. A. Boginskiy
Joint Stock Company “Russian Railways” (JSC “RZD”)
Russian Federation

Deputy Head of Directorate for planning and control of locomotive repair, Directorate of traction — branch of the JSC “RZD”

Moscow, 105064, Russia



V. V. Semchenko
Joint-Stock Company “Road Center for the Implementation of the Krasnoyarsk Railway” (JSC “DCV of the Krasnoyarskaya Railway”)
Russian Federation

General Director of the JSC “DCV of the Krasnoyarskaya Railway”

Krasnoyarsk, 660021, Russia



References

1. Kapustin L. D., Kopanev A. S., Lozanovskiy A. L. Features of the design and operation of the VL80R electric locomotive. Moscow, Transport Publ., 1979, 175 p.

2. Tushkanov B. A. VL80R electric locomotive. Instruction manual. Moscow, Transport Publ., 1985, 541 p.

3. Golovanov V. A., Kapustin L. D., Khomyakov B. I. Operation of power converters for electric rolling stock. Moscow, Transport Publ., 1979, 207 p.

4. Kapustin L. D. Operating efficiency of AC electric locomotives with regenerative braking on thyristor converters. Electric rolling stock with semiconductor converters. Coll. of works of the JSC “VNIIZhT”. Moscow, Transport Publ., 1972, no. 478, pp. 22 – 33.

5. Nekrasov O. A., Lisitsin A. L., Muginshteyn L. A., Rakhmaninov V. I. Operation modes of main line locomotives. Moscow, Transport Publ., 1983, 231 p.

6. Kapustin L. D., Kamenev A. S., Lozanovskiy A. L. Reliability and efficiency of VL80R electric locomotives in operation. Moscow, Transport Publ., 1986, 246 p.

7. Gorban' V. N., Donskoy A. L., Shabalin N. G. Electronic equipment of VL80R locomotive, repair and maintenance. Moscow, Transport Publ., 1984, 183 p.

8. Semchenko V. V., Mal'tsev E. A., Lakin I. K. Analysis of operating modes of VL80R series electric locomotives. Lokomotiv [Lokomotive], 2015, no. 11, pp. 40 – 41.

9. Gorlenko A. V., Donskoy A. L., Lakin I. K., Shabalin N. G. Technical diagnosis of electronic equipment for AC electric locomotives. Moscow, Transport Publ., 1992, 112 p.

10. Zaytsev V. K., Alekseev A. G. Stationary diagnostic device for VL80R electric locomotive control unit. Proc. of the JSC “VNIIZhT”, 1982, no. 650, pp. 97 – 104.

11. Khromov I. Yu., Barkunova A. A., Nikishkina E. A. Monitoring of operation modes of locomotives. Prospects for the development of service maintenance of locomotives. Coll. of materials of the Third International Scientific and Practical Conference (Moscow, October 11 – 12, 2018). Moscow, Lokomotivnye tekhnologii Publ., 2018, pp. 391 – 395.

12. Lipa K. V., Belinskiy A. A., Pustovoy V. N., Lyangasov S. L., Lakin I. K. [et al.]. Monitoring of the technical condition and operating modes of locomotives in TMKh-Service. Theory and practice. Moscow, Lokomotivnye tekhnologii Publ., 2015, 212 p.

13. Lakin I. I. Monitoring of the technical condition of locomotives according to onboard hardware-software systems. Dis. cand. tech. sci. Moscow, MIIT Publ., 2016, 195 p.

14. Semchenko V. V., Lakin I. K., Mal'tsev E. A. Experience of implementation and the results of the operation of monitoring system of technical condition and operating modes of VL80R electric locomotives. Prospects for the development of servicing locomotives. Coll. of materials of the Third International Scientific and Practical Conference (Moscow, October 11 – 12, 2018). Moscow, Lokomotivnye tekhnologii Publ., 2018, pp. 345 – 350.

15. Mel'nikov V. A., Abolmasov A. A., Lakin I. I. Algorithmic protection of locomotives. Lokomotiv [Locomotive], 2015, no. 3, pp. 8 – 10.

16. Boginskiy S. A. On the need to develop new control algorithms for LSGs of locomotives. Prospects for the development of servicing locomotives. Coll. of materials of the Third International Scientific and Practical Conference (Moscow, October 11 – 12, 2018). Moscow, Lokomotivnye tekhnologii Publ., 2018, pp. 126 – 129.


Review

For citations:


Boginskiy S.A., Semchenko V.V. Operation results of reversible converters of AC electric locomotives VL80R on the Krasnoyarskaya Railway. RUSSIAN RAILWAY SCIENCE JOURNAL. 2019;78(1):27-32. (In Russ.) https://doi.org/10.21780/2223-9731-2019-78-1-27-32

Views: 943


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 2223-9731 (Print)
ISSN 2713-2560 (Online)