The Trade Robotization

Authors

  • A. I. Telegin South Ural State University, Miass
  • D. N. Timofeev South Ural State University, Miass
  • S. G. Pudovkina South Ural State University, Miass
  • V. A. Telegin AutoReal Ltd, Miass

DOI:

https://doi.org/10.14529/ctcr190408

Keywords:

vending machine, SVG modeling, CSS animation, electric motor, dynamics equations, software sequence, FAULHABER, Arduino, mobile application, mobile payments, HTTP service, NFC technology, JSON, 1Сv8, tablet PC

Abstract

Russian food vending machines (VM) have been considered. Schemes of construction of robotic technical systems for automatic sale of goods and the principles of their operation have been proposed. The choice of manipulators delivering paid goods from the warehouse to the buyer has been justified. Examples of X3D-models of warehouses and shelves on which the goods are placed have been given. The SVG-model of manual and automatic animation of program movements of the manipulator in the process of delivery of goods from the warehouse to the buyer has been developed. An algorithm for automatic generation of program sequences for electric drives with a system of commands that specify the absolute and relative positions of the shafts of electric motors, maximum and ground speeds, as well as acceleration and deceleration has been proposed. The examples of generated program sequences for linear actuators the FAULHABER company have been given. The schemes of arrangement of manipulator drives, in which its dynamic equations are linear with constant coefficients. That schemes allow to solve elementary problems of optimal control of the manipulator in terms of performance. A three-level control system of VM has been described. The controllers or electric drive drivers in this system are used at the lower level, the middle level is implemented on the Arduino platform, and the tablet PC is used at the upper level. The possible software and hardware of communication between the VM and the buyer, accounting, sales and inventory in the warehouse, receiving payments are described.. The variants of Arduino integration with mobile applications and information systems on the 1cv8 platform have been considered. Lists and describes the SVG code in models of VM, allowing to place equipment, pick up the geometric dimensions of the warehouses, shelves, baskets, select the types of kinematic pairs and the lengths of manipulators links, build software the movements of manipulators and other tasks in the design of the VM.

Author Biographies

A. I. Telegin, South Ural State University, Miass

д-р физ.-мат. наук, профессор, декан Электротехнического факультета

D. N. Timofeev, South Ural State University, Miass

младший научный сотрудник кафедры автоматики

S. G. Pudovkina, South Ural State University, Miass

канд. техн. наук, доцент кафедры прикладной математики и ракетодинамики

V. A. Telegin, AutoReal Ltd, Miass

ведущий программист

References

Modeling and simulation of a tracked mobile inspection robot in MATLAB and V-REP software / M. Ciszewski, Ł. Mitka, T. Buratowski, M. Giergiel // Journal of Automation, Mobile Robotics & Intelligent Systems. – 2017. – Vol. 11, no. 2. – P. 5–11. DOI: 10.14313/JAMRIS_2-2017/11

Gonzalez, R. A Matlab-based interactive simulator for mobile robotics / R. Gonzalez, C. Mahulea, M. Kloetzer // 2015 IEEE International Conference on Automation Science and Engineering (CASE). – 2015. – P. 310–315. DOI: 10.1109/CoASE.2015.7294097

Azak, S. E. Performance evaluation of the grid-based FastSLAM in V-REP using MATLAB / S. Azak, E. Erdogan // 2018 14th International Conference on Advanced Trends in Radioelecrtronics, Telecommunications and Computer Engineering (TCSET). – 2018. – P. 276–281. DOI: 10.1109/TCSET.2018.8336202

Integration Of Robotics Simulation Programs Into Educational Process In Kuban State University / I. Ryadchikov, S. Sechenev, A. Svidlov et al. // The European Proceedings of Social & Behavioural Sciences. – 2017. – P. 304–309. DOI: 10.15405/epsbs.2017.12.31

Casini, M. MARS: An Educational Environment for Multiagent Robot Simulations / M. Casini, A. Garulli // Modelling and Simulation in Engineering. – 2016. – P. 1–13. DOI: 10.1155/2016/5914706

Pennestri, E. Coordinate reduction strategies in multibody dynamics: a review / E. Pennestri, P.P. Valentini. – University of Rome Tor Vergata, Roma, 2007. – 17 p.

Gurel, C.S. Modeling and Robot Simulation of a 5-DOF Robot Manipulator in MapleSim and SimMechanics Environments / C.S. Gurel. – University of Maryland, 2018. – 18 p.

Docquier, N. ROBOTRAN: A powerful symbolic gnerator of multibody models / N. Docquier, A. Poncelet, P. Fisette // Mechanical Sciences. – 2013. – P. 199–219. DOI: 10.5194/ms-4-199-2013

Verlinden, O. Symbolic generation of the kinematics of multibody systems in EasyDyn: From MuPAD to Xcas/Giac / O. Verlinden, L. Ben Fekih, G. Kouroussis // Theoretical and Applied Mechanics Letters. – 2013. – No. 3. DOI: 10.1063/2.13013012

Feature and Performance Comparison of the V-REP, Gazebo and ARGoS Robot Simulators / L. Pitonakova, M. Giuliani, A. Pipe, A. Winfield // Proceedings of the 19th Towards Autonomous Robotic Systems Conference (TAROS 2018). – 2018. DOI: 10.1007/978-3-319-96728-8_30

Development of a Khepera IV Library for the V–REP Simulator / E. Peralta, E. Fabregas, G. Farias et al. // IFAC-PapersOnLine – 11th IFAC Symposium on Advances in Control Education. – 2016. – P. 81–86. DOI: 10.1016/j.ifacol.2016.07.157

On 3D simulators for multi-robot systems in ROS: MORSE or Gazebo? / F.M. Noori, D. Portugal, R. Rocha, M. Couceiro //2017 IEEE International Symposium on Safety, Security and Rescue Robotics (SSRR). – 2017. – P. 19–24. DOI: 10.1109/SSRR.2017.8088134

Еременко, О.С. Анализ возможностей библиотеки X3DOM для отображения трехмерного контента в сети интернет / О.С. Еременко, Е.С. Чердынцев // XI Студенческая международная заочная научно-практическая конференция «Молодежный научный форум: технические и математические науки». – 2014. – № 4 (11). – С. 20–25.

Власенко, А.Н. Использование WebGL в образовательном процессе при подготовке специалистов в области сварочного производства / А.Н. Власенко, В.В. Степанов // Дистанционное и виртуальное обучение. – 2016. – № 12. – С. 115–121.

SVG-разметка двухмерной графики: Опыт использования SVG в создании двухмерной графики / А.И. Телегин, Д.Н. Тимофеев, Д.И. Читалов, С.Г. Пудовкина. – Миасс: ЮУрГУ ЭТФ, 2015. – 73 с.

Телегин, В.А. Моделирование и анимация ходьбы плоских моделей шагающих аппаратов / В.А. Телегин, М.И. Кайгородцев // Вестник ЮУрГУ. Серия «Машиностроение». – 2008. – Вып. 8, № 10. – С. 15–24.

Voinov, I.V. Maxima-code for derivation of dynamic reactions and generalized driving forces in the joints of robotic manipulators / I.V. Voinov, A.I. Telegin, D.I. Timofeev // International Conference on Industrial Engineering. – 2018.

Телегин, А.И. Динамическая развязка систем тел с замкнутыми ветвями / А.И. Телегин // Изв. РАН. Механика твердого тела. – 1999. – № 2. – C. 37–45.

Published

2019-11-18

Issue

Section

Control in Social and Economic Systems