Deprecated: $wgMWOAuthSharedUserIDs=false is deprecated, set $wgMWOAuthSharedUserIDs=true, $wgMWOAuthSharedUserSource='local' instead [Called from MediaWiki\HookContainer\HookContainer::run in /var/www/html/w/includes/HookContainer/HookContainer.php at line 135] in /var/www/html/w/includes/Debug/MWDebug.php on line 372
Leader following speed synchronisation in multiple DC motor system using a hybrid controller - MaRDI portal

Leader following speed synchronisation in multiple DC motor system using a hybrid controller (Q2286568)

From MaRDI portal
scientific article
Language Label Description Also known as
English
Leader following speed synchronisation in multiple DC motor system using a hybrid controller
scientific article

    Statements

    Leader following speed synchronisation in multiple DC motor system using a hybrid controller (English)
    0 references
    0 references
    0 references
    22 January 2020
    0 references
    Summary: In this paper, we explore an innovative approach to design a Chopper fed DC motor coupled as a multi-agent system (MAS), predominantly leader following MAS, to achieve consensus on speed regulated by a hybrid controller. The hybrid controller incorporates pole placement, tracking and regulation (RST) controller accompanied by adaptive model reference adaptive control (MRAC), after that incorporating MIT rule in the design analysis to endorse system stability. Leader following algorithm is fused with the system model to make the speed of following agent's equivalent to that of leader. In the proposed method, every motor with its chopper circuit is treated as sole agent i.e., \(i_\mathrm{th}\) agent. In this paper, we assume that communication among leader and follower is fixed moreover, we also consider two possible scenarios of communication, i.e., in the presence of delay and without delay. For model simulation, MATLAB is used and the obtained results endorse effectiveness of the proposed design.
    0 references
    leader following MAS
    0 references
    consensus
    0 references
    DC chopper
    0 references
    DC motor
    0 references
    hybrid control
    0 references

    Identifiers