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Cyclo-Static Data Flow Model for TDM

机译:TDM的Cyclo-静态数据流模型

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Time Division Multiplexing (TDM) allows resource sharing amongst the tasks of concurrent applications, where each application may have its own end-to-end hard real time requirements. Current data flow modeling techniques for TDM arbitrated tasks with cyclo-static execution times are over-pessimistic in modeling their worst-case temporal behavior. This causes unnecessary over-reservation of resources to the application, leading to under-utilization of system resources and unnecessary rejection of additional applications. More accurate models for representing TDM exist but have restrictive assumptions on execution times (should be static) and/or the allocation of resources. We propose a conservative data flow model that accurately estimates the worst-case temporal behavior of TDM arbitrated tasks with cyclo-static execution as well as for the general case. This enables optimized resource allocation for TDM arbitration. Quantitatively, we show that our new model provides up to 30% improvement of resource allocation, in a case study of a wireless LAN radio.
机译:时分复用(TDM)允许在并发应用程序的任务中进行资源共享,其中每个应用程序可能具有自己的端到端硬实时要求。当前数据流建模技术对于具有Cyclo-静态执行时间的TDM仲裁任务在模拟其最坏情况的时间行为方面是过于悲观的。这导致对应用程序不必要的资源过度保留,导致系统资源的利用率和不必要的拒绝其他应用程序。用于代表TDM的更准确的模型存在但在执行时间(应该是静态)和/或资源分配的限制假设。我们提出了一种保守的数据流模型,可以准确地估计TDM仲裁任务的最坏情况的时间行为,以及对静态执行以及一般情况。这使得能够优化TDM仲裁的资源分配。在定量上,我们表明,在无线LAN广播的案例研究中,我们的新模式可提供资源分配的高达30%的资源分配。

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