Article Title
Algorithm for joint traction and electric calculations of traction power supply system with considering the parameters of railway sections and training situation
Journal thematic sections:
Railways rolling stock, traction of trains and electrification
Pages: 106-115
udk: 621.311:621.331
Article reference
Komyakov A. A. , Vilgelm A. S. , Shkulov A. I.
Algorithm for joint traction and electric calculations of traction power supply system with considering the parameters of railway sections and training situation Izvestiia Transsiba – The Trans-Siberian Bulletin,
2021, no. 3(47), pp. 106 – 115.
Abstract
Paper is devoted to the development of an improved algorithm for calculating the traction power supply system for further practical implementation in order to improve the accuracy of calculations of the traction power supply system by combining traction and electrical calculations with considering the current train situation. The relevance of the task is due to the need to improve the accuracy of calculations of throughput and carrying capacity under the conditions of power supply devices with considering the criteria for energy efficiency of the transportation process. The available solutions to this problem in the form of ready-made software systems and algorithms are considered. A numerical experiment was carried out for the DC section in the program "Complex of calculations for traction power supply", which showed that the relative error that determines the convergence of traction and electrical calculations is from 1.6 % to 5.1 %. The main reason for the discrepancy is the insufficiently correct calculation of the voltage at the current collector of the electric rolling stock. An improved algorithm for calculating the traction power supply system is proposed. The distinguishing feature of this algorithm is the implementation of a clarifying full traction calculation before compiling instant schemes and instant electric and traction calculations. As a result of the research, a general algorithm for joint traction and electrical calculations with considering the parameters of railway sections and the current training situation has been developed,. A conclusion about the advantages of the proposed algorithm and promising directions for further research is made.