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首页> 外文期刊>LIPIcs : Leibniz International Proceedings in Informatics >Reliable Dynamic Packet Scheduling over Lossy Real-Time Wireless Networks
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Reliable Dynamic Packet Scheduling over Lossy Real-Time Wireless Networks

机译:有损实时无线网络上可靠的动态分组调度

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Along with the rapid development and deployment of real-time wireless network (RTWN) technologies in a wide range of applications, effective packet scheduling algorithms have been playing a critical role in RTWNs for achieving desired Quality of Service (QoS) for real-time sensing and control, especially in the presence of unexpected disturbances. Most existing solutions in the literature focus either on static or dynamic schedule construction to meet the desired QoS requirements, but have a common assumption that all wireless links are reliable. Although this assumption simplifies the algorithm design and analysis, it is not realistic in real-life settings. To address this drawback, this paper introduces a novel reliable dynamic packet scheduling framework, called RD-PaS. RD-PaS can not only construct static schedules to meet both the timing and reliability requirements of end-to-end packet transmissions in RTWNs for a given periodic network traffic pattern, but also construct new schedules rapidly to handle abruptly increased network traffic induced by unexpected disturbances while minimizing the impact on existing network flows. The functional correctness of the RD-PaS framework has been validated through its implementation and deployment on a real-life RTWN testbed. Extensive simulation-based experiments have also been performed to evaluate the effectiveness of RD-PaS, especially in large-scale network settings.
机译:随着实时无线网络(RTWN)技术在各种应用中的快速发展和部署,有效的分组调度算法在RTWN中起着至关重要的作用,以实现所需的实时感知服务质量(QoS)和控制,尤其是在出现意外干扰的情况下。文献中大多数现有的解决方案都集中在静态或动态调度结构上,以满足所需的QoS要求,但通常假设所有无线链路都是可靠的。尽管此假设简化了算法设计和分析,但在现实环境中并不现实。为了解决这个缺点,本文介绍了一种新颖的可靠动态数据包调度框架,称为RD-PaS。对于给定的周期性网络流量模式,RD-PaS不仅可以构造静态调度来满足RTWN中端到端分组传输的时间和可靠性要求,而且还可以快速构造新的调度来处理由意外情况引起的突然增加的网络流量干扰,同时将对现有网络流量的影响降至最低。 RD-PaS框架的功能正确性已经通过在实时RTWN测试平台上的实现和部署得到了验证。还进行了广泛的基于仿真的实验来评估RD-PaS的有效性,尤其是在大规模网络设置中。

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