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Flexible scheduling for adaptable real-time systems

机译:适用于适用的实时系统的灵活调度

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Complex real time systems, such as those envisaged for autonomous vehicle control, are expected to exhibit: adaptive and dynamic behaviour, resilience to software/hardware failures and graceful degradation, under conditions of overload. Two objectives need to be met before such properties can be realised. First, critical services must be guaranteed to provide results of a minimum acceptable quality and reliability by their deadlines. Second, the utility of the system needs to be maximised. We present an approach to meeting the above objectives. This approach combines the benefits of both fixed priority preemptive and best effort scheduling: offline analysis is used to guarantee that critical timing requirements will be met, whilst at run time, a simple adaptive threshold policy arbitrates between competing optional components, enhancing the system utility obtained.
机译:复杂的实时系统,例如设想的自主车辆控制的实时系统,预计将展示:适应性和动态行为,在过载条件下,软件/硬件故障和优雅降级的弹性。在实现此类属性之前需要满足两个目标。首先,必须保证关键服务,以便通过截止日期提供最低可接受的质量和可靠性的结果。其次,系统的效用需要最大化。我们提出了一种满足上述目标的方法。这种方法结合了固定优先级抢占和最佳精力调度的好处:脱机分析用于保证将满足关键时序要求,同时在运行时,一个简单的自适应阈值策略在竞争的可选组件之间仲裁,增强了所获得的系统实用程序。

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