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Response-Time Analysis of Engine Control Applications Under Fixed-Priority Scheduling

机译:固定优先调度下发动机控制应用的响应时间分析

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摘要

Engine control systems include computational activities that are triggered at predetermined angular values of the crankshaft, and therefore generate a workload that tends to increase with the engine speed. To cope with overload conditions, a common practice adopted by the automotive industry is to design such angular tasks with a set of modes that switch at given rotation speeds to adapt the computational demand. This paper presents an exact response time analysis for engine control applications consisting of periodic and engine-triggered tasks scheduled by fixed priority. The proposed analysis explicitly takes into account the physical constraints of the considered systems and is based on the derivation of dominant speeds, which are particular engine speeds that are proved to determine the worst-case behavior of engine-triggered tasks from a timing perspective. Experimental results are finally reported to validate the proposed approach and compare it against an existing sufficient test.
机译:发动机控制系统包括在曲轴的预定角度处触发的计算活动,因此产生往往随着发动机速度而增加的工作量。为了应对超负荷条件,汽车行业采用的常见做法是使用一组模式设计这样的角度任务,该模式以给定的旋转速度切换以适应计算需求。本文介绍了由固定优先级安排的周期性和发动机触发任务组成的发动机控制应用的精确响应时间分析。建议的分析明确地考虑了所考虑的系统的物理限制,并且基于主导速度的推导,这是特定的发动机速度,证明是从定时透视中确定发动机触发任务的最坏情况行为。据报道,实验结果旨在验证所提出的方法,并将其与现有的足够测试进行比较。

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