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A multi-task real-time scheduling algorithm based on dynamic weight compensation and adaptive task jumping

机译:一种基于动态权重补偿和自适应任务跳转的多任务实时调度算法

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For a certain real-time task scheduling problems with characteristics of uncertain task sets, the executing time dynamic changing and the task's mutual coupling strength dynamic changing, a multi-tasking dynamic scheduling algorithm is proposed based on dynamic weight value compensation and adaptive task jumping, which solved the loads storming caused by the dynamic task scheduling as well as the too long system response time caused by the changes of the tasks' coupling coefficient. The scheduling diagram and function of the modules are given firstly. Then, the focuses are the implementation of the execution controller and the weight compensation method based on the research of task weight value, the weight compensation and weight classification. The reliability and efficiency of the algorithm is verified by comparing tests, and has been applied to the combining heavy-duty train's braking condition monitoring and early warning system.
机译:对于具有不确定任务集的特征的一定的实时任务调度问题,基于动态权重计补偿和自适应任务跳跃,提出了一种基于动态权重补偿和自适应任务跳跃的多任务动态调度算法的执行时间动态改变和任务的相互耦合强度动态变化。由动态任务调度引起的负载冲压以及由任务耦合系数的变化引起的太长的系统响应时间。首先给出模块的调度图和功能。然后,对焦是基于任务权重值的研究的执行控制器和权重补偿方法的实现,权重补偿和权重分类。通过比较测试来验证算法的可靠性和效率,并已应用于相结合的重型列车制动状态监测和预警系统。

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