首页> 外文会议>Proceedings of the 2002 conference on Asia South Pacific design automation/VLSI Design >Static and Dynamic Variable Voltage Scheduling Algorithms for Real-Time Heterogeneous Distributed Embedded Systems
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Static and Dynamic Variable Voltage Scheduling Algorithms for Real-Time Heterogeneous Distributed Embedded Systems

机译:实时异构分布式嵌入式系统的静态和动态可变电压调度算法

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摘要

This paper addresses the problem of static and dynamic variable voltage scheduling of multi-rate periodic task graphs (i.e., tasks with precedence relationships) and aperiodic tasks in heterogeneous distributed real-time embedded systems. Such an embedded system may contain general-purpose processors, field-programmable gate arrays (FPGAs) and application-specific integrated circuits (ASICs). Variable voltage scheduling is performed only on general-purpose processors. The static scheduling algorithm constructs a variable voltage schedule via heuristics based on critical path analysis and task execution order refinement. The algorithm redistributes the slack in the initial schedule and refines task execution order in an efficient manner. The variable voltage schedule guarantees all the hard deadlines and precedence relationships of periodic tasks. The dynamic scheduling algorithm is also based on an initially valid static schedule. The objective of the on-line scheduling algorithm is to provide best-effort service to soft aperiodic tasks, as well as to reduce the system power consumption by determining clock frequencies (and correspondingly supply voltages) for different tasks at run-time, while still guaranteeing the deadlines and precedence relationships of hard real-time periodic tasks.
机译:本文解决了异构分布式实时嵌入式系统中多速率周期性任务图(即具有优先级关系的任务)和非周期性任务的静态和动态可变电压调度问题。这样的嵌入式系统可以包含通用处理器,现场可编程门阵列(FPGA)和专用集成电路(ASIC)。可变电压调度仅在通用处理器上执行。静态调度算法基于关键路径分析和任务执行顺序优化,通过启发式方法构造可变电压调度。该算法以有效的方式重新分配了初始计划中的松弛部分,并细化了任务执行顺序。可变电压时间表可确保所有硬性期限和定期任务的优先级关系。动态调度算法也基于初始有效的静态调度。在线调度算法的目标是为软非周期性任务提供尽力而为的服务,并通过在运行时确定不同任务的时钟频率(以及相应的电源电压)来降低系统功耗确保硬性实时定期任务的期限和优先级关系。

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