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Quality-of-Service Optimization for Multiple Multimedia Tasks in Real-Time Embedded Systems

机译:实时嵌入式系统中多个多媒体任务的服务质量优化

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Nowadays, most embedded systems support different kinds of multimedia applications and real-time tasks. The computational requirements of multimedia applications are usually very demanding and embedded systems may not be powerful enough to support multiple multimedia applications. As a result, real-time tasks will miss their deadlines and thus get rejected. To solve this problem, we propose a Dynamic Workload Shaping (DWS) method by extending a Dynamic Buffering Technique (DBT) to multiple multimedia tasks and proposing two optimization methods. The original DBT scheduling method can only guarantee that the playout devices are always able to read out data items from the playout buffers, but does not guarantee any QoS. Two algorithms are proposed in this work to optimize and guarantee the quality of multimedia applications. We use several examples to illustrate how both algorithms can be applied to real systems. With MPEG-4 and H.264 applications, our experimental results show that the lower bound of 15 frames per second for the output device rates of the two multimedia applications can be guaranteed even if the processor frequency that can be allocated to them is very small. The processor frequency for running other real-time applications can be saved 10% to 15% if the multimedia applications run at their corresponding minimum processor frequencies that were computed by the guaranteeing QoS method.
机译:如今,大多数嵌入式系统都支持不同种类的多媒体应用和实时任务。多媒体应用的计算要求通常非常苛刻,嵌入式系统可能不足以支持多个多媒体应用程序。因此,实时任务将会错过他们的截止日期,从而被拒绝。为了解决这个问题,我们通过将动态缓冲技术(DBT)扩展到多个多媒体任务并提出两个优化方法来提出动态工作负载整形(DWS)方法。原始DBT调度方法只能保证播出设备始终能够从播放缓冲区读出数据项,但不保证任何QoS。在这项工作中提出了两种算法,以优化和保证多媒体应用的质量。我们使用几个例子来说明这两种算法如何应用于真实系统。使用MPEG-4和H.264应用,我们的实验结果表明,即使可以分配给它们的处理器频率也很小,也可以保证每秒15帧的下限为每秒15帧的输出设备速率。如果多媒体应用在保证QoS方法计算的相应最小处理器频率下运行,则运行其他实时应用的处理器频率可以保存10%至15%。

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