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Rate derivation and its applications to reactive, real-time embedded systems

机译:速率推导及其在反应式实时嵌入式系统中的应用

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An embedded system (the system) continuously interacts with its environment under strict timing constraints, called the external constraints, and it is important to know how these external constraints translate to time budgets, called the internal constraints, on the tasks of the system. Knowing these time budgets reduces the complexity of the system's design and validation problem and helps the designers have a simultaneous control on the system's functional as well as temporal correctness from the beginning of the design flow. The translation is carried out by first deriving the rate of each task in the system, hence the term "rate derivation", using the system's task structure and the rates of the input stimuli coming into the system from its environment. The derived task rates are later used to derive and validate the rest of the internal as well as external constraints. This paper proposes a general task graph model to represent the system's task structure, techniques for deriving and validating the system's timing constraints, and a hardware/software codesign methodology that puts everything together.
机译:嵌入式系统(系统)在严格的时序约束(称为外部约束)下与环境连续交互,了解系统任务如何将这些外部约束转化为时间预算(称为内部约束)非常重要。了解这些时间预算可以降低系统设计和验证问题的复杂性,并帮助设计人员从设计流程开始就同时控制系统的功能和时间正确性。通过首先使用系统的任务结构和从其环境进入系统的输入刺激的速率来推导系统中每个任务的速率,从而得出术语“速率推导”来执行翻译。导出的任务率随后用于导出和验证其余的内部和外部约束。本文提出了一个通用的任务图模型来表示系统的任务结构,用于推导和验证系统时序约束的技术以及将所有内容组合在一起的硬件/软件代码签名方法。

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