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Holistic Scheduling of Real-Time Applications in Time-Triggered In-Vehicle Networks

机译:时延车载网络中实时应用的整体调度

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摘要

As time-triggered communication protocols [e.g., time-triggered controller area network (TTCAN), time-triggered protocol (TTP), and FlexRay] are widely used on vehicles, the scheduling of tasks and messages on in-vehicle networks becomes a critical issue for offering quality-of-service (QoS) guarantees to time-critical applications on vehicles. This paper studies a holistic scheduling problem for handling real-time applications in time-triggered in-vehicle networks where practical aspects in system design and integration are captured. The contributions of this paper are multifold. First, it designs a novel scheduling algorithm, referred to as Unfixed Start Time (UST) algorithm, which schedules tasks and messages in a flexible way to enhance schedulability. In addition, to tolerate assignment conflicts and further improve schedulability, it proposes two rescheduling and backtracking methods, namely, Rescheduling with Offset Modification (ROM) and Backtracking and Priority Promotion (BPP) procedures. Extensive performance evaluation studies are conducted to quantify the performance of the proposed algorithm under a variety of scenarios.
机译:随着时间触发的通信协议[例如,时间触发的控制器局域网(TTCAN),时间触发的协议(TTP)和FlexRay]在车辆上广泛使用,在车载网络上调度任务和消息变得至关重要为车辆上时间紧迫的应用提供服务质量(QoS)保证的问题。本文研究了一个整体调度问题,用于处理时间触发的车载网络中的实时应用程序,其中捕获了系统设计和集成的实际方面。本文的贡献是多重的。首先,它设计了一种新颖的调度算法,称为不固定的开始时间(UST)算法,该算法以灵活的方式调度任务和消息以增强可调度性。此外,为了容忍分配冲突并进一步提高可调度性,它提出了两种重新计划和回溯方法,即带偏移量修改的重新计划(ROM)和回溯和优先级提升(BPP) )程序。进行了广泛的性能评估研究,以量化该算法在各种情况下的性能。

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