Train operation control on-based of logical-linguistic model

被引:0
作者
Yurenko K.I. [1 ]
Kharchenko P.A. [2 ]
Fandeev E.I. [3 ]
Yurenko I.K. [4 ]
机构
[1] Rostov State Transport University, 2, sq. Rostovskogo Strelkovogo Polka Narodnogo Opolcheniya, Rostov-on-Don
[2] Join Stock Company 'Russian Railways' the Operational Locomotive Depot Likhaya, 1, district Likhovsky, Kamenskcity, Rostov region
[3] Platov South-Russian State Polytechnic University (NPI), 132, Prosvesheniya Street, Novocherkassk
[4] 36, Gvardeyskaya Street, Novocherkassk
来源
EAI Endorsed Transactions on Energy Web | 2019年 / 19卷 / 22期
关键词
Autodriver; Computing experiment; Fuzzy logic; Logical-linguistic simulation; On-board control system; Passenger train; Suburban electric trains;
D O I
10.4108/eai.13-7-2018.156388
中图分类号
学科分类号
摘要
The article presents a new approach to control of train movement based on a combination of terminal (finite) and fuzzy control methods using a logical-linguistic model whose numerical parameters are determined on the basis of search optimization and simulation modeling. The results of computational experiments are presented and given recommendations to the application and further development of the proposed approach. In particular, the proposed logicallinguistic model can be used in the construction of on-board systems of suburban electric trains. © 2019 K.I. Yurenko et al.
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共 17 条
  • [1] Yurenko K.I., Optimization of regimes of train operations in onboard control-information system of loco, Proc. of VII Intern. Sci. Conf. "TRIS-2016, pp. 97-102, (2016)
  • [2] Yurenko K.I., Sapunkov A.N., Fandeev E.I., Evolution of rolling-stocks onboard control system, Proc. of VIII sci.-pract. conf." The scientific industry of the European continent, pp. 44-49, (2012)
  • [3] Yurenko K.I., Savos'kin A.N., Fandeev E.I., "Mathematical modeling of the energy optimum modes of driving the train taking into account perturbation", 3, pp. 34-44, (2015)
  • [4] Faminskiy G.V., Erofeev E.V., Automatic devices for driving trains, (1978)
  • [5] Baranov L.A., Microprocessor-based autodriver system of electric rolling stock, (1990)
  • [6] Baranov L.A., Erofeev E.V., Meleshin I.S., Chin L.M., Optimization of train control, (2011)
  • [7] Muginstein L.A., Ilyutovich A.E., Yabko I.A., (2012), "Energy optimal methods of train control, col. of sci. papers of VNIIZhT, Moscow: Intext, (2012)
  • [8] Klimovich A.V., Optimization of the control of train movement for minimum energy costs for traction, (2008)
  • [9] Wang Y., Ning B., Cao F., De Schutter B., van den Boom T.J.J., A survey on optimal trajectory planning for train operations,, Proceedings of the 2011 IEEE International Conference on Intelligent Rail Transportation (ICIRT 2011), pp. 589-594, (2011)
  • [10] Dominguez M., Fernandez A., Cucala A.P., Blanquer J., (2010) "Efficient design of Automatic Train Operation speed profiles with on board energy storage devices, Computers in Railways XII, WIT Transactions on The Built Environment, 114, pp. 509-520, (2010)