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A Scratch-Pad Memory Management Framework for Embedded Real-Time Systems

机译:用于嵌入式实时系统的暂存器内存管理框架

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摘要

In this paper, we propose a scrath-pad memory (SPM) management framework for minimizing energy consumption in preemptive fixed-priority multi-task real-time systems. The framework achieves energy minimization in the instruction memory subsystems. At the design time, energy-optimal usage of SPM, i.e., SPM partitioning and code allocation, is determined. At runtime, SPM is managed with the cooperative support of a real-time operating system and hardware modules. The proposed framework has been implemented in our simulation environment, show the results of effectiveness of the proposed framework, and its effectiveness has been demonstrated by a set of experiments.
机译:在本文中,我们提出了Scrath-pad存储器(SPM)管理框架,用于将可抢先固定优先级多任务实时系统中的能耗降至最低。该框架在指令存储器子系统中实现了能量最小化。在设计时,确定SPM的能量最佳用法,即SPM分区和代码分配。在运行时,通过实时操作系统和硬件模块的协作支持来管理SPM。所提出的框架已在我们的仿真环境中实现,显示了所提出框架的有效性结果,并且其有效性已通过一组实验得到证明。

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