Task mapping and priority assignment for soft real-time applications under deadline miss ratio constraints

Author:

Manolache Sorin1,Eles Petru1,Peng Zebo1

Affiliation:

1. Linköping University, Sweden

Abstract

Both analysis and design optimisation of real-time systems has predominantly concentrated on considering hard real-time constraints. For a large class of applications, however, this is both unrealistic and leads to unnecessarily expensive implementations. This paper addresses the problem of task priority assignment and task mapping in the context of multiprocessor applications with stochastic execution times and in the presence of constraints on the percentage of missed deadlines. We propose a design space exploration strategy together with a fast method for system performance analysis. Experiments emphasize the efficiency of the proposed analysis method and optimisation heuristic in generating high-quality implementations of soft real-time systems with stochastic task execution times and constraints on deadline miss ratios.

Publisher

Association for Computing Machinery (ACM)

Subject

Hardware and Architecture,Software

Reference55 articles.

1. An application-level synthesis methodology for multidimensional embedded processing systems

2. Applying new scheduling theory to static priority pre-emptive scheduling

3. Incorporating unbounded algorithms into predictable real-time systems;Audsley N. C.;Computer Systems Science and Engineering,1993

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