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Hypergraph-based data link layer scheduling for reliable packet delivery in wireless sensing and control networks with end-to-end delay constraints

机译:基于超图的数据链路层调度,可在具有端到端延迟约束的无线传感和控制网络中可靠地传递数据包

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摘要

Many mission-critical and safety-critical applications in networked wireless sensing and control systems have stringent reliability requirements and timing constraints on end-toend (E2E) packet delivery. Late arrivals of packets could severely degrade overall system performance and cause serious problems in system operation. In this paper, we study the data link layer scheduling problem to maximize the reliability of E2E packet delivery in TDMA-based wireless sensing and control networks (WSCNs) subject to specified delay constraints. We propose to organize the physical network nodes into logical hypernodes and form a hypergraph for improved scheduling flexibility. Based on the hypergraph, we introduce two data link layer scheduling schemes to maximize the E2E reliability in packet delivery without violating any delay constraints of the packets. The first scheme, named dedicated scheduling, decides how many time slots (TSs) for each hypernode along the path to the destination should be allocated to transmit a packet, and the packets are only transmitted in their scheduled TSs. The second scheme, named shared scheduling, allows the packets to share their scheduled TSs, and thus further improve the E2E reliability. We apply these two schemes in both single-path routing and any-path routing in WSCNs. Asymptotic analysis of the proposed schemes is provided and extensive simulation experiments are performed to illustrate their effectiveness in improving the E2E reliability of packet delivery under different network settings.
机译:网络无线感测和控制系统中的许多关键任务和安全关键应用都对端到端(E2E)数据包交付具有严格的可靠性要求和时序约束。数据包的延迟到达会严重降低整体系统性能,并在系统运行中造成严重问题。在本文中,我们研究数据链路层调度问题,以在受指定延迟约束的情况下,在基于TDMA的无线传感和控制网络(WSCN)中最大化E2E数据包传递的可靠性。我们建议将物理网络节点组织成逻辑超节点,并形成一个超图以提高调度灵活性。基于超图,我们引入了两种数据链路层调度方案,以在不影响数据包任何延迟约束的情况下最大化数据包传递过程中的端到端可靠性。第一种方案称为专用调度,它确定应为到达目的地的路径分配每个超节点多少个时隙(TS)来传输数据包,并且仅在其已调度的TS中传输数据包。第二种方案称为共享调度,它允许数据包共享其调度的TS,从而进一步提高端到端的可靠性。我们在WSCN的单路径路由和任意路径路由中都应用了这两种方案。提供了所提出方案的渐近分析,并进行了广泛的仿真实验,以说明它们在提高不同网络设置下的数据包传送的端到端可靠性方面的有效性。

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