USE OF MICROCONTROLLER FOR MEASURING SHAFT SPEED OF DIESEL LOCOMOTIVE HYDRAULIC TRANSMISSION
DOI:
https://doi.org/10.15802/stp2016/83990Keywords:
tachometer sensor, D-2MMU-2, hydraulic transmission, hydraulic transmission test, test-bench, data-measuring systemAbstract
Purpose. The article considers the process of development and improvement of tachometer data collectors for the data-measuring diesel locomotive hydraulic transmission test system, which will give the possibility of obtaining the source data to conduct further studies of the technical condition of diesel locomotive hydraulic transmission. It is supposed to provide a solution to the problem of development and improvement of tachometer data measuring tools of the previously created data-measuring diesel locomotive hydraulic transmission test system, starting out from the possibility of modification of the existing locomotive hydraulic transmission test-bench at the Dnepropetrovsk Diesel Locomotive Repair Plant «Promteplovoz». Methodology. The researchers proposed in the work a method of modifying the existing tachometer sensor of the automated microprocessor system for the locomotive hydraulic transmission test-bench in the conditions of a diesel locomotive repair plant. It is applicable by substantiating the choice of the required tachometer sensor measuring method, as well as by using the necessary hardware and software to accomplish the goal with the ability to integrate into the data-measuring system for diesel locomotive hydraulic transmission testing. Findings. The available equipment of the locomotive hydraulic transmission test-bench allowed for design of the optical type speed sensor based on the existing sensor D-2MMU-2. The factory testing with the use of a sensor prototype resulted in determination of the required and sufficient sampling time for sensor operating microcontroller. Originality. The available equipment of the locomotive hydraulic transmission test-bench allowed for design of the optical type speed sensor based on the existing sensor D-2MMU-2. We developed the operation algorithms for the microcontroller that processes the signals from this sensor. The sensor was factory-tested. According to the data sample obtained during the tests, we showed the possibility of reducing the sensor information retrieval frequency. Practical value. The designed sensor significantly reduces the cost of development of the diesel locomotive hydraulic transmission test-bench, besides it can be used when developing similar hydraulic transmission test-benches of other wheeled vehicles and the like. The designed sensor has a greater accuracy than that of D-2-2MMU and considerably lower production cost in comparison with current tachometer sensors. The measurement results are input data to perform further studies in order to determine the technical condition of UGP750-1200 hydraulic transmission during the factory post-repair testing.
References
Balinova, B. C. (2004). Statistika v voprosakh i otvetakh. Moscow: TK Velbi, Prospekt.
Bezgin, A. S., & Grekov, E. L. (2013). Primeneniye inkrementalnogo enkodera kak datchika skorosti v tsifrovykh sistemakh upravleniya ekskavatornogo elektroprivoda peremennogo toka. Nauchno-tekhnicheskiy vestnik Povolzhya – Scientific and Technical Bulletin of Povolzhe, 3, 72-76.
Zhukovitskiy, I. V., & Klyushnik, I. A. (2016). Ispolzovaniey mikrokontrollerov v stende ispytaniya gidravlicheskikh peredach teplovoza. Paper presented at VII Mizhnarodna naukovo-praktychna konferentsiya «Bezpeka ta elektromahnitna sumisnist na zaliznychnomu transporti», Dnipropetrovsk.
Kiryanov, A. V., Chukanov, V. V., Kiryanov, V. P., & Perebeynos, S. V. (2013). Informatsionno-upravlyayushchaya sistema aktivnogo aerostaticheskogo podshipnika na baze fotoelektricheskogo preobrazovatelya kombinirovannogo tipa. Interekspo Geo-Sibir, 5(1), Retrieved from http://cyberleninka.ru/article/n/informatsionno-upravlyayuschaya-sistema-aktivnogo-aerostaticheskogo-podshipnika-na-baze-fotoelektricheskogo-preobrazovatelya
Kliushnyk, I. A. (2016). Vykorystannia informatsiinykh tekhnolohii dlia vymiriuvannia chastoty obertannia na stendi vyprobuvannia hidravlichnykh peredach teplovoziv. Paper presented at Vseukrainska naukovo-praktychna konferentsiya studentiv, aspirantiv ta molodykh vchenykh: «Informatsiino-tekhnolohii v modeliuvanni», Mykolaiv.
Rudenko, V. M. (2012). Matematychna statystyka. Kyiv: Tsentr uchbovoi literatury.
Stepnov, M. N. (1985). Statisticheskiye metody obrabotki rezultatov mekhanicheskikh ispytaniy: Spravochnik. Moscow: Mashinostroeniye.
Saranskiye pribory (2016). Takhometry magnitoinduktsionnyye distantsionnyye TMi. OOO «Saranskiye pribory». Saranskiye pribory, Retrieved from http://sibspz.ru/pribory-dlya-izmereniya-parametrov-dvizheniya-takhometry/takhometry-magnitoinduktsionnye-distantsionnye-tmi
OMRON Corporation (2016). EE-SX1041 Photomicrosensor (Transmissive). OMRON Corporation, Retrieved from https://www.omron.com/ecb/products/photo/34/ee_sx1041.html
Xu, G., Qiuhua, W., Shouwang, Y., Wei, C., & Changhai, Z. (2013). Improved PSO algorithm for improving the subdivision accuracy of photoelectric rotary encoder. Infrared and Laser Engineering, 42(6), 320-323.
Zhukovytskyy, I. V., Kliushnyk, I. A., Ochkasov, O. B., & Korenyuk, R. O. (2015). Information-measuring Test System of Diesel Locomotive Hydraulic Transmissions. Nauka ta prohres transportu – Science and Transport Progress, 5(59)(59), 53-65. doi:10.15802/stp2015/53159
Schneider Electric (2016). Opto-electronic rotary encoders OsiSense XCC. Catalogue. Schneider Electric, Retrieved from http://katalog.schneider-electric.cz/dsmapp/data/pdf/cz/TL3/XCC_Rotary_OsiSense.pdf
Zheng, D., Zhang, S., Wang, S., & Zheng, D. (2015). A capacitive rotary encoder based on quadrature modulation and demodulation. IEEE Transactions on Instrumentation and Measurement, 64(1), 143-153. doi:10.1109/TIM.2014.2328456
Downloads
Published
How to Cite
Issue
Section
License
Copyright and Licensing
This journal provides open access to all of its content.
As such, copyright for articles published in this journal is retained by the authors, under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0). The CC BY license permits commercial and non-commercial reuse. Such access is associated with increased readership and increased citation of an author's work. For more information on this approach, see the Public Knowledge Project, the Directory of Open Access Journals, or the Budapest Open Access Initiative.
The CC BY 4.0 license allows users to copy, distribute and adapt the work in any way, provided that they properly point to the author. Therefore, the editorial board of the journal does not prevent from placing published materials in third-party repositories. In order to protect manuscripts from misappropriation by unscrupulous authors, reference should be made to the original version of the work.