嵌入式应用的可重构状态机组件

C. Angelov, Xu Ke, Yu Guo, K. Sierszecki
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引用次数: 4

摘要

本文提出了一种利用状态机和模态功能块(SMFBs/MFBs)等可重构软件组件的嵌入式状态机组合设计方法。该方法采用关注点分离,其中SMFB实现了系统行为的反应性(控制流)方面,与转换性(数据流)方面分离。后者委托给模态功能块,其中SMFB用于指示模态功能块的当前状态,模态功能块在相应的状态/操作模式中执行所需的信号转换。状态机和模态功能块的组合作为周期性事件驱动状态机运行,将常规事件驱动状态机的表达能力与适合可调度性分析的周期性执行模式相结合。SMFB使用基于二进制决策图(BDD)的状态逻辑控制器设计模式实现,从而产生可重构组件,该组件可与模态功能块一起使用,为广泛的顺序和混合控制应用设计状态机。
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Reconfigurable State Machine Components for Embedded Applications
The paper presents a compositional design method for embedded state machines, using reconfigurable software components such as state machine and modal function blocks (SMFBs/MFBs). The method adopts separation of concerns, where the SMFB realizes the reactive (control flow) aspect of system behaviour, in separation from the transformational (data flow) aspect. The latter is delegated to modal function blocks, whereby the SMFB is used to indicate the current state to modal function blocks that perform the required signal transformations within the corresponding states/modes of operation. The composition of state machine and modal function block operates as a periodic event-driven state machine combining the expressive power of conventional event driven state machines with a periodic execution pattern amenable to schedulability analysis. The SMFB has been implemented using a Binary Decision Diagram (BDD)-based State Logic Controller design pattern, resulting in a reconfigurable component that can be used with modal function blocks to engineer state machines for a broad range of sequential and hybrid control applications.
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