Advanced Maximum Adhesion Tracking Strategies in Railway Traction Drives

被引:4
作者
Abouzeid, Ahmed Fathy [1 ]
Guerrero, Juan Manuel [1 ]
Lejarza-Lasuen, Lander [2 ]
Muniategui-Aspiazu, Iker [2 ]
Endemano-Isasi, Aitor [2 ]
Briz, Fernando [1 ]
机构
[1] Univ Oviedo, Dept Elect Engn, Gijon 33204, Spain
[2] Ingeteam Power Technol, Dept Tract Syst, Zamudio 48170, Spain
关键词
Wheels; Adhesives; Force; Rails; Torque; Rail transportation; Velocity control; Antislip control; electric traction drives; maximum adhesion tracking (MAT); railways; roller rig; SLIDING-MODE CONTROL; FUZZY-LOGIC; WHEEL SLIP; ALGORITHM; SYSTEMS; MPPT; PV;
D O I
10.1109/TTE.2023.3312621
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Modern railway traction systems are often equipped with antislip control strategies to comply with performance and safety requirements. A certain amount of slip is needed to increase the torque transferred by the traction motors onto the rail. Commonly, constant slip control is used to limit the slip velocity between the wheel and rail avoiding excessive slippage and vehicle derailment. This is at the price of not fully utilizing the train's traction and braking capabilities. Finding the slip at which maximum traction force occurs is challenging due to the nonlinear relationship between slip and wheel-rail adhesion coefficient, as well as to its dependence on rail and wheel conditions. Perturb and observe (P&O) and steepest gradient (SG) methods have been reported for the maximum adhesion tracking (MAT) search. However, both methods exhibit weaknesses. Two new MAT strategies are proposed in this article, which overcome the limitations of existing methods, using fuzzy logic control (FLC) and particle swarm optimization (PSO). Existing and proposed methods are first simulated and further validated experimentally using a scaled roller rig under identical conditions. The results show that the proposed methods improve the traction capability with lower searching time and oscillations compared to existing solutions. Tuning complexity and computational requirements will also be shown to be favorable to the proposed methods.
引用
收藏
页码:3645 / 3660
页数:16
相关论文
共 63 条
[1]  
Blaschke F., 1972, Siemens Review, P217
[2]  
Buscher M.:., 1995, Radschlupfregelung zur maximalen KraftschluSSausnutzung bei elektrischen Traktionsantrieben
[3]   The impact of high-speed rail investment on economic and environmental change in China: A dynamic CGE analysis [J].
Chen, Zhenhua ;
Xue, Junbo ;
Rose, Adam Z. ;
Haynes, Kingsley E. .
TRANSPORTATION RESEARCH PART A-POLICY AND PRACTICE, 2016, 92 :232-245
[4]   Combined heuristic knowledge and limited measurement based fuzzy logic antiskid control for railway applications [J].
Cheok, AD ;
Shiomi, S .
IEEE TRANSACTIONS ON SYSTEMS MAN AND CYBERNETICS PART C-APPLICATIONS AND REVIEWS, 2000, 30 (04) :557-568
[5]  
Cheok AD, 1998, 1998 SECOND INTERNATIONAL CONFERENCE ON KNOWLEDGE-BASED INTELLIGENT ELECTRONIC SYSTEMS, KES'98 PROCEEDINGS, VOL 1, P195, DOI 10.1109/KES.1998.725846
[6]   Evaluation of particle swarm optimization techniques applied to maximum power point tracking in photovoltaic systems [J].
Diaz Martinez, David ;
Trujillo Codorniu, Rafael ;
Giral, Roberto ;
Vazquez Seisdedos, Luis .
INTERNATIONAL JOURNAL OF CIRCUIT THEORY AND APPLICATIONS, 2021, 49 (07) :1849-1867
[7]  
Eberhart RC, 2001, IEEE C EVOL COMPUTAT, P81, DOI 10.1109/CEC.2001.934374
[8]   Torsional Vibration Suppression in Railway Traction Drives [J].
Fathy Abouzeid, Ahmed ;
Guerrero, Juan M. ;
Vicente-Makazaga, Iban ;
Muniategui-Aspiazu, Iker ;
Endemano-Isasi, Aitor ;
Briz, Fernando .
IEEE ACCESS, 2022, 10 :32855-32869
[9]  
GarciaRivera M, 1997, PROCEEDINGS OF THE SIXTH IEEE INTERNATIONAL CONFERENCE ON FUZZY SYSTEMS, VOLS I - III, P119, DOI 10.1109/FUZZY.1997.616355
[10]   Examining the determinants of CO2 emissions caused by the transport sector: Empirical evidence from 12 European countries [J].
Georgatzi, Vasiliki V. ;
Stamboulis, Yeoryios ;
Vetsikas, Apostolos .
ECONOMIC ANALYSIS AND POLICY, 2020, 65 :11-20