2005Unpublished venueRequires access

Hybrid earliest deadline first/preemption threshold scheduling for real-time systems

Dong-Zhi He, Fei–Yue Wang, Wei Li, Xiangwen Zhang

Open publisher page 8 citations

Abstract

As embedded systems are getting increasingly complex, preemption overheads become a serious load problem for many microchip-based application specific systems, and sometimes may even jeopardize the system schedulability. This paper presents a dynamic preemption threshold scheduling (DPT) that integrates the preemption threshold scheduling into the earliest deadline first The DPT scheduling can effectively reduce context switching by threads assignment and changing the task dynamic preemption threshold at runtime. Meanwhile, because the algorithm is based on dynamic scheduling, it can achieve higher processor utilization with relatively low costs in preemption switching and memory requirements. The DPT scheduling can also perfectly schedule a mixed task set with preemptive and non-preemptive tasks, and subsumes both as special cases.

About this research paper

What this paper is about

As embedded systems are getting increasingly complex, preemption overheads become a serious load problem for many microchip-based application specific systems, and sometimes may even jeopardize the system schedulability. This paper presents a dynamic preemption threshold scheduling (DPT) that integrates the preemption threshold scheduling into the earliest deadline first The DPT scheduling can effectively reduce context switching by threads assignment and changing the task dynamic preemption threshold at runtime. Meanwhile, because the algorithm is based on dynamic scheduling, it can achieve higher processor utilization with relatively low costs in preemption switching and memory requirements. The DPT scheduling can also perfectly schedule a mixed task set with preemptive and non-preemptive tasks, and subsumes both as special cases.

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OpenAlex reports 8 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

As embedded systems are getting increasingly complex, preemption overheads become a serious load problem for many microchip-based application specific systems, and sometimes may even jeopardize the system schedulability. This paper presents a dynamic preemption threshold scheduling (DPT) that integrates the preemption threshold scheduling into the earliest deadline first The DPT scheduling can effectively reduce context switching by threads assignment and changing the task dynamic preemption threshold at runtime. Meanwhile, because the algorithm is based on dynamic scheduling, it can achieve higher processor utilization with relatively low costs in preemption switching and memory requirements. The DPT scheduling can also perfectly schedule a mixed task set with preemptive and non-preemptive tasks, and subsumes both as special cases.

Key concepts: Preemption, Computer science, Fixed-priority pre-emptive scheduling, Context switch, Scheduling (production processes), Dynamic priority scheduling, Fair-share scheduling, Earliest deadline first scheduling

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