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Latency-Aware Bus Arbitration for Real-Time Embedded Systems

机译:实时嵌入式系统的延迟感知总线仲裁

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摘要

We present a latency-aware bus arbitration scheme for real-time embedded systems. Only a few works have addressed the quality of service (QoS) issue for traditional busses or interconnection network. They mostly aimed at minimizing the latencies of several master blocks, resulting in decreasing overall bandwidth and/or increasing the latencies of other master blocks. In our method, the optimization goal is different in that the latency of a master should be as close as a given latency constraint. This is achieved by introducing the concept of "slack". In this method, masters effectively share the given communication architecture so that they all observe expected latencies and the degradation of overall bandwidth is marginal. The experimental results show that our method greatly reduces the number of constraint violations compared to other conventional arbitration schemes while minimizing the bandwidth degradation.
机译:我们提出了一种用于实时嵌入式系统的延迟感知总线仲裁方案。只有少数工作解决了传统总线或互连网络的服务质量(QoS)问题。它们的主要目的是最小化几个主块的延迟,从而导致总带宽的减少和/或其他主块的延迟的增加。在我们的方法中,优化目标的不同之处在于,主服务器的延迟应与给定的延迟约束尽可能接近。这是通过引入“松弛”的概念来实现的。在这种方法中,主机可以有效地共享给定的通信体系结构,以便它们都能观察到预期的延迟,并且总带宽的下降是很小的。实验结果表明,与其他传统仲裁方案相比,我们的方法大大减少了违反约束的次数,同时将带宽降级降至最低。

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