• DocumentCode
    45108
  • Title

    Notes on Feasibility and Optimality Conditions of Small-Scale Multifunction Robotic Cell Scheduling Problems With Pickup Restrictions

  • Author

    Foumani, Mehdi ; Gunawan, Indra ; Smith-Miles, Kate ; Ibrahim, M. Yousef

  • Author_Institution
    Sch. of Appl. Sci. & Eng., Monash Univ., Clayton, VIC, Australia
  • Volume
    11
  • Issue
    3
  • fYear
    2015
  • fDate
    Jun-15
  • Firstpage
    821
  • Lastpage
    829
  • Abstract
    Optimization of robotic workcells is a growing concern in automated manufacturing systems. This study develops a methodology to maximize the production rate of a multifunction robot (MFR) operating within a rotationally arranged robotic cell. An MFR is able to perform additional special operations while in transit between transferring parts from adjacent processing stages. Considering the free-pickup scenario, the cycle time formulas are initially developed for small-scale cells where an MFR interacts with either two or three machines. A methodology for finding the optimality regions of all possible permutations is presented. The results are then extended to the no-wait pickup scenario in which all parts must be processed from the input hopper to the output hopper, without any interruption either on or between machines. This analysis enables insightful evaluation of the productivity improvements of MFRs in real-life robotized workcells.
  • Keywords
    industrial robots; manufacturing systems; scheduling; MFR; automated manufacturing systems; cycle time formulas; feasibility condition; free-pickup scenario; input hopper; no-wait pickup scenario; optimality condition; output hopper; pickup restriction; robotic workcell optimization; rotationally arranged robotic cell; small-scale multifunction robotic cell scheduling problems; Educational institutions; Grippers; Informatics; Job shop scheduling; Service robots; Automated Manufacturing Systems; Automated manufacturing systems; Cyclic Scheduling; Multi-function; No-wait; Robotic Cells; cyclic scheduling; multifunction; no-wait; robotic cells;
  • fLanguage
    English
  • Journal_Title
    Industrial Informatics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1551-3203
  • Type

    jour

  • DOI
    10.1109/TII.2014.2371334
  • Filename
    6960061