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Schedulability analysis of real-time multiframe cosimulations on multicore platforms

机译:多核平台实时多重帧辅助的调度分析

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For real-time simulations, the fidelity of simulation depends not only on the functional accuracy of simulation but also on its timeliness. It is helpful for simulation designers if they can analyze and verify that a simulation will always meet its timing requirements without unnecessarily sacrificing functional accuracy. ing the simulated processes simply as software tasks allows us to transform the problem of verifying timeliness into a schedulability analysis problem where tasks are checked as to whether they are schedulable under the timing constraints or not. In this paper we extend a timed automaton-based framework due to Fersman and Yi for schedulability analysis of real-time systems, for the special case of real-time multiframe cosimulations. To the best of our knowledge, this work is the first to analyze the schedulability of single- or multiframe real-time simulations. We found that there are some special requirements posed by multiframe simulations, which necessitate changes and improvements in the existing framework designed for actual real-time systems. We made the required theoretical extensions to the framework and implemented our extended framework in UPPAAL, a tool for modeling, simulation, and verification of real-time systems modeled as timed automata. The functional correctness and resource requirements of the implemented framework are then demonstrated using simple examples.
机译:对于实时仿真,模拟的保真度不仅取决于模拟的功能精度,还取决于其及时性。如果他们可以分析和验证模拟始终满足其定时要求,这是有帮助的,而不会不必要地牺牲功能准确性。模拟过程简单地作为软件任务允许我们将验证时间性的问题转换为调度分析问题,其中检查任务是在时序约束下是否定期调度。本文在实时多帧化妆的特殊情况下,我们扩展了一种由Fersman和Yi的基于自动机构的框架,因为实时系统的特殊情况。据我们所知,这项工作是第一个分析单个或多帧实时仿真的调度的调度。我们发现,多帧模拟有一些特殊要求,这需要在实际实时系统设计的现有框架中提高和改进。我们为框架制定了所需的理论扩展,并在UPPAAL中实施了我们的扩展框架,该工具是一种建模,仿真和验证为定时自动机建模的实时系统的验证。然后使用简单的示例演示实现框架的功能正确性和资源要求。

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