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Research on Pattern Recognition of Automobile Anti-Lock Braking System

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21 mar 2025

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Mousaei, A., & Peng, H. (2024). A new control method for the steadiness of electric vehicles with 2-motor in rear and front wheels. International Journal of Emerging Electric Power Systems, 25(4), 541-554. MousaeiA. & PengH. (2024). A new control method for the steadiness of electric vehicles with 2-motor in rear and front wheels. International Journal of Emerging Electric Power Systems, 25(4), 541-554.Search in Google Scholar

Aksjonov, A., Vodovozov, V., Augsburg, K., & Petlenkov, E. (2018). Design of regenerative anti-lock braking system controller for 4 in-wheel-motor drive electric vehicle with road surface estimation. International Journal of Automotive Technology, 19, 727-742. AksjonovA.VodovozovV.AugsburgK. & PetlenkovE. (2018). Design of regenerative anti-lock braking system controller for 4 in-wheel-motor drive electric vehicle with road surface estimation. International Journal of Automotive Technology, 19, 727-742.Search in Google Scholar

Sun, W., Zhang, J., & Liu, Z. (2018). Two-time-scale redesign for antilock braking systems of ground vehicles. IEEE Transactions on Industrial Electronics, 66(6), 4577-4586. SunW.ZhangJ. & LiuZ. (2018). Two-time-scale redesign for antilock braking systems of ground vehicles. IEEE Transactions on Industrial Electronics, 66(6), 4577-4586.Search in Google Scholar

Gowda, D. V., & Ramachandra, A. C. (2017). Slip ratio control of anti-lock braking system with bang-bang controller. International Journal of Computer Techniques, 4(1), 97-104. GowdaD. V. & RamachandraA. C. (2017). Slip ratio control of anti-lock braking system with bang-bang controller. International Journal of Computer Techniques, 4(1), 97-104.Search in Google Scholar

Pecolt, S., Błażejewski, A., Gierula, K., & Królikowski, T. (2021). Investigation of Anti-Lock Braking System failures using wavelet analysis. Procedia Computer Science, 192, 3262-3271. PecoltS.BłażejewskiA.GierulaK. & KrólikowskiT. (2021). Investigation of Anti-Lock Braking System failures using wavelet analysis. Procedia Computer Science, 192, 3262-3271.Search in Google Scholar

Soni, A. (2022). Anti-Lock Braking System. International Journal of Innovative Research in Engineering & Management, 9(1), 248-252. SoniA. (2022). Anti-Lock Braking System. International Journal of Innovative Research in Engineering & Management, 9(1), 248-252.Search in Google Scholar

Dadhich, A. (2020). An Overview on the Anti-locking Braking System and Control in the Automobile. International Journal of Innovative Research in Computer Science & Technology, 8(5), 381-384. DadhichA. (2020). An Overview on the Anti-locking Braking System and Control in the Automobile. International Journal of Innovative Research in Computer Science & Technology, 8(5), 381-384.Search in Google Scholar

El-Fatah, A., Sharkawy, A. N., Ghazaly, N. M., & Moaaz, A. (2021). A comparative study of different control methods for anti-lock braking system (ABS). SVU-International Journal of Engineering Sciences and Applications, 2(1), 27-34. El-FatahA.SharkawyA. N.GhazalyN. M. & MoaazA. (2021). A comparative study of different control methods for anti-lock braking system (ABS). SVU-International Journal of Engineering Sciences and Applications, 2(1), 27-34.Search in Google Scholar

Zhu, S., Fan, X., Qi, G., & Wang, P. (2023). Review of control algorithms of vehicle anti-lock braking system. Recent Patents on Engineering, 17(2), 30-45. ZhuS.FanX.QiG. & WangP. (2023). Review of control algorithms of vehicle anti-lock braking system. Recent Patents on Engineering, 17(2), 30-45.Search in Google Scholar

Barik, D., & Nayak, P. K. (2018). Antilock Braking System Recent Developments and Its Control Techniques. International Journal of Engineering, Management, Humanities and Social Sciences Paradigms, 30, 178-189. BarikD. & NayakP. K. (2018). Antilock Braking System Recent Developments and Its Control Techniques. International Journal of Engineering, Management, Humanities and Social Sciences Paradigms, 30, 178-189.Search in Google Scholar

Pretagostini, F., Shyrokau, B., & Berardo, G. (2019, March). Anti-lock braking control design using a nonlinear model predictive approach and wheel information. In 2019 IEEE international conference on mechatronics (ICM) (Vol. 1, pp. 525-530). IEEE. PretagostiniF.ShyrokauB. & BerardoG. (2019, March). Anti-lock braking control design using a nonlinear model predictive approach and wheel information. In 2019 IEEE international conference on mechatronics (ICM) (Vol. 1, pp. 525-530). IEEE.Search in Google Scholar

Abougarair, A. J., Shashoa, N. A. A., & Aburakhis, M. K. (2022). Performance of anti-lock braking systems based on adaptive and intelligent control methodologies. Indonesian Journal of Electrical Engineering and Informatics (IJEEI), 10(3), 626-643. AbougarairA. J.ShashoaN. A. A. & AburakhisM. K. (2022). Performance of anti-lock braking systems based on adaptive and intelligent control methodologies. Indonesian Journal of Electrical Engineering and Informatics (IJEEI), 10(3), 626-643.Search in Google Scholar

Viramgama, D. (2019). Intelligent Vehicle Safety Technology: Anti-lock Braking System (ABS) and its Advancements. International Research Journal of Engineering and Technology (IRJET), 6(9), 1158-1163. ViramgamaD. (2019). Intelligent Vehicle Safety Technology: Anti-lock Braking System (ABS) and its Advancements. International Research Journal of Engineering and Technology (IRJET), 6(9), 1158-1163.Search in Google Scholar

Kumar, R., Divyanshu, & Kumar, A. (2021). Nature based self-learning mechanism and simulation of automatic control smart hybrid antilock braking system. Wireless Personal Communications, 116, 3291-3308. KumarR.Divyanshu & KumarA. (2021). Nature based self-learning mechanism and simulation of automatic control smart hybrid antilock braking system. Wireless Personal Communications, 116, 3291-3308.Search in Google Scholar

Umnitsyn, A. A., & Bakhmutov, S. V. (2021, October). Intelligent anti-lock braking system of electric vehicle with the possibility of mixed braking using fuzzy logic. In Journal of physics: conference series (Vol. 2061, No. 1, p. 012101). IOP Publishing. UmnitsynA. A. & BakhmutovS. V. (2021, October). Intelligent anti-lock braking system of electric vehicle with the possibility of mixed braking using fuzzy logic. In Journal of physics: conference series (Vol. 2061, No. 1, p. 012101). IOP Publishing.Search in Google Scholar

Li, J. (2023). Research on pattern recognition of automobile anti-lock braking system. International Journal of Vehicle Information and Communication Systems, 8(1-2), 119-134. LiJ. (2023). Research on pattern recognition of automobile anti-lock braking system. International Journal of Vehicle Information and Communication Systems, 8(1-2), 119-134.Search in Google Scholar

Bahnik, M., Filyo, D., Pekarek, D., Vlasimsky, M., Cech, J., Hanis, T., & Hromcik, M. (2020, October). Visually assisted anti-lock braking system. In 2020 IEEE Intelligent Vehicles Symposium (IV) (pp. 1219-1225). IEEE. BahnikM.FilyoD.PekarekD.VlasimskyM.CechJ.HanisT. & HromcikM. (2020, October). Visually assisted anti-lock braking system. In 2020 IEEE Intelligent Vehicles Symposium (IV) (pp. 1219-1225). IEEE.Search in Google Scholar

Abdulkareem, A. Q., Humod, A. T., & Ahmed, O. A. (2022). A Data Based Method Road Surface Parameters Estimation for Anti-Lock Braking System. DIYALA JOURNAL OF ENGINEERING SCIENCES, 15(4). AbdulkareemA. Q.HumodA. T. & AhmedO. A. (2022). A Data Based Method Road Surface Parameters Estimation for Anti-Lock Braking System. DIYALA JOURNAL OF ENGINEERING SCIENCES, 15(4).Search in Google Scholar

Shi, Y., Li, B., Luo, J., & Yu, F. (2019). A practical identifier design of road variations for anti-lock brake system. Vehicle system dynamics, 57(3), 336-368. ShiY.LiB.LuoJ. & YuF. (2019). A practical identifier design of road variations for anti-lock brake system. Vehicle system dynamics, 57(3), 336-368.Search in Google Scholar

Sun, J., Xue, X., & Cheng, K. W. E. (2020). Four-wheel anti-lock braking system with robust adaptation under complex road conditions. IEEE transactions on vehicular technology, 70(1), 292-302. SunJ.XueX. & ChengK. W. E. (2020). Four-wheel anti-lock braking system with robust adaptation under complex road conditions. IEEE transactions on vehicular technology, 70(1), 292-302.Search in Google Scholar

Yang, G., Fang, S., Dong, T., Luo, Y., & Wang, D. (2023). Antilock braking performance evaluation of an automotive magnetorheological braking system. Smart Materials and Structures, 32(10), 105004. YangG.FangS.DongT.LuoY. & WangD. (2023). Antilock braking performance evaluation of an automotive magnetorheological braking system. Smart Materials and Structures, 32(10), 105004.Search in Google Scholar

Chen, Q., Tian, W., Chen, W., Ahmed, Q., & Wu, Y. (2018). Model-based fault diagnosis of an anti-lock braking system via structural analysis. Sensors, 18(12), 4468. ChenQ.TianW.ChenW.AhmedQ. & WuY. (2018). Model-based fault diagnosis of an anti-lock braking system via structural analysis. Sensors, 18(12), 4468.Search in Google Scholar

Jo, T., Park, I., Lee, J., Yoon, J., Lee, J., & Kim, H. (2024). A Fault Diagnosis and Fault-tolerant Anti-lock Brake System Control for Actuator Stuck Failures in Braking System in Autonomous Vehicles. IEEE Transactions on Transportation Electrification. JoT.ParkI.LeeJ.YoonJ.LeeJ. & KimH. (2024). A Fault Diagnosis and Fault-tolerant Anti-lock Brake System Control for Actuator Stuck Failures in Braking System in Autonomous Vehicles. IEEE Transactions on Transportation Electrification.Search in Google Scholar

Qu, K., Kou, L., & Wang, N. (2021, October). Maintenance Optimization Design of Automobile Anti-lock Brake System Based on Importance Measures. In 2021 Global Reliability and Prognostics and Health Management (PHM-Nanjing) (pp. 1-8). IEEE. QuK.KouL. & WangN. (2021, October). Maintenance Optimization Design of Automobile Anti-lock Brake System Based on Importance Measures. In 2021 Global Reliability and Prognostics and Health Management (PHM-Nanjing) (pp. 1-8). IEEE.Search in Google Scholar

J. Alejandro Betancur, Andrés Castillo, Edwin Ramos, Héctor Vargas, Javier Ochoa & Carlos Sanchez. (2024). Diagnostic methodology for vehicles equipped with antilock braking system and electronic stability control. Discover Applied Sciences(9),452-452. BetancurJ. AlejandroCastilloAndrésRamosEdwinVargasHéctorOchoaJavier & SanchezCarlos. (2024). Diagnostic methodology for vehicles equipped with antilock braking system and electronic stability control. Discover Applied Sciences(9),452-452.Search in Google Scholar

Nan Shen. (2024). Small Town Population Forecasting and Planning Method Based on Genetic Algorithm and BP Neural Network. International Journal of High Speed Electronics and Systems(prepublish), ShenNan. (2024). Small Town Population Forecasting and Planning Method Based on Genetic Algorithm and BP Neural Network. International Journal of High Speed Electronics and Systems(prepublish),Search in Google Scholar

Zhiyin Xu, Jinyu Lu & Jilei Liu. (2024). The whole-process tracking method of stable state transformation for multistable tensegrity based on Levenberg-Marquardt method. Engineering Structures118667-118667. XuZhiyinLuJinyu & LiuJilei. (2024). The whole-process tracking method of stable state transformation for multistable tensegrity based on Levenberg-Marquardt method. Engineering Structures118667-118667.Search in Google Scholar

Język:
Angielski
Częstotliwość wydawania:
1 razy w roku
Dziedziny czasopisma:
Nauki biologiczne, Nauki biologiczne, inne, Matematyka, Matematyka stosowana, Matematyka ogólna, Fizyka, Fizyka, inne