Regeneration of the data acquisition procedure of the passivation system of the mass transit system
DOI:
https://doi.org/10.61117/ipsumtec.v2i2.26Keywords:
Automatic mode, SACEM, mass transit systemAbstract
This research and development work aims to implement a graphical user interface (GUI) using the Java programming language to provide continuous control of the operation of the trains of Line A of the Mass Transit System (STC), in Automatic or Controlled Manual mode, allowing the circulation of trains with short separation distances, and with full safety.
The system development was carried out considering the safety conditions, which are guaranteed by means of a permanent control and verification device, which generates a continuous transmission (via - train) of information in order to avoid under any circumstances that the train is in dangerous or near-dangerous situations.
This development, in addition to being low-cost, has the necessary security locks so that a cabinet cannot be rearmed if it is not in a passive state and if the personnel do not have the necessary credentials to carry out this procedure. The solution obtained in this work is integrated into the Java-designed interface of the Mass Transit System, allowing real-time access to the system from any point where there is a computer connected to the designed program.
Downloads
Metrics
References
A. H Picerno, “Electronica Basica.” http://paginas.fisica.uson.mx/horacio.munguia/aula_virtual/Cursos/Topicos%20de%20EyE/Capacitores.PDF[Consulta:Noviembre2017].
Bodington Esteva, “Basic para micro controladores PIC.” http://www.unrobotica.com/manuales/basic.pdf [Consulta: noviembre 2017].
Clases abstractase interfacesen java http://elvex.ugr.es/decsai/java/pdf/ACinterfaces.pdf
Deitel “Java como programar”. Novena Edicion. PEARSON, 2012. Archivo de la categoría puerto serial JAVA https://upscodigojava.wordpress.com/category/programacion-2/puerto-serial/puerto-serial-libreria-rxtx/
Garcia Breijo, “Compilador CCCS y Simulador PROTEUS para Micro controladores PIC” https://tecnologialsb.files.wordpress.com/2017/05/compilador-c-ccs-y-simulador-proteus-para-microcontroladores-pic.pdf[Consulta:Octubre2017].
Ignacio Arroyo Fernández, “Evaluación de dostécnicas de Reconocimiento de patrones para su Implementación en el simulador de Pilotaje automático (pa-135, nm-79 Chopper) de taller del STC metro de la Cd. de México”, Tesis Maestría, Universidad Tecnológica de la Mixteca, noviembre 2013.
SIEMENS Transportation Systems, ‘‘SACEM, Driver Operated Trains: Mexico City - Line A, Line8, LineB’’, A High performance ATC Brouchure, 50 RueBarb`es - BP531, 92532 Montrouge Cedex, France, http://www.siemens.fr/transportation.
Published
How to Cite
Issue
Section
License
Copyright (c) 2019 Violeta Martínez Ramírez, Iván Martínez López, Oscar Uriel Morales Olguín, Josué Romero Teodoro y Alejandro Gil Vázquez

This work is licensed under a Creative Commons Attribution 4.0 International License.
