This paper introduces a control-oriented scheduling approach based on the time slack ratio for adaptive human-to-human queuing systems. The proposed method prioritizes task assignments dynamically, using a slack-based decision-making criterion that ensures efficient task execution under uncertainty. A theoretical analysis establishes competitive performance guarantees by comparing the online and offline scheduling solutions. The results indicate that the algorithm effectively minimizes lateness and task delays in high-load environments where the number of concurrent tasks significantly exceeds the slack ratio parameter. Future research directions include the development of improved heuristics and adaptive scheduling strategies to enhance system performance. © © 2025 The Authors.
Original languageEnglish
Pages (from-to)150-154
Number of pages5
JournalIFAC-PapersOnLine
Volume59
Issue number14
DOIs
StatePublished - 2025
Event15th IFAC Workshop on Adaptive and Learning Control Systems - Mexico, Mexico
Duration: 2 Jul 20254 Jul 2025

    Research areas

  • adaptive control, competitive analysis, online scheduling, real-time system, time slack ratio, Adaptive control systems, Computer control systems, Decision making, Information systems, Interactive computer systems, Man machine systems, Online systems, Scheduling algorithms, Adaptive Control, Competitive analysis, Decision making criteria, Online scheduling, Queuing systems, Real - Time system, Task executions, Tasks assignments, Time slack, Time slack ratio, Real time systems

ID: 148838241