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Distributed Dynamic Packet Scheduling Framework for Handling Disturbances in Real-Time Wireless Networks

机译:实时无线网络中用于处理干扰的分布式动态分组调度框架

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Real-time wireless networks (RTWNs) are fundamental to many Internet-of-Things (IoT) applications. RTWNs typically apply time-division multiple access (TDMA)-based media access control mechanisms and often demand deterministic end-to-end packet delivery to meet the given quality of service (QoS) requirements. Packet scheduling in an RTWN thus plays a critical role for achieving the desired performance but is a challenging problem especially when the RTWN is large and must deal with multiple disturbances (i.e., unexpected events causing abrupt workload changes associated with certain sensing tasks) occurring concurrently. This paper introduces a novel distributed dynamic packet scheduling framework, D-2-PaS. D-2-PaS is capable of processing disturbances and minimizes the number of dropped packets while ensuring that all critical events due to disturbances are handled by their deadlines. As a distributed approach, D-2-PaS constructs schedules locally at individual nodes, which significantly reduces the amount of schedule-related information to be broadcast by the gateway. As a dynamic approach, D-2-PaS applies a lightweight packet dropping algorithm to determine on-line at the gateway which packets can be dropped in response to disturbances and disseminate this information to the network. D-2-PaS has been implemented on a multi-hop RTWN testbed to validate its applicability on hardware and a popular RTWN stack. Both testbed measurements and extensive simulation results demonstrate the effectiveness of D-2-PaS.
机译:实时无线网络(RTWN)是许多物联网(IoT)应用程序的基础。 RTWN通常会应用基于时分多址(TDMA)的媒体访问控制机制,并且经常需要确定性的端到端数据包交付才能满足给定的服务质量(QoS)要求。因此,RTWN中的分组调度对于实现期望的性能起着至关重要的作用,但是是具有挑战性的问题,尤其是当RTWN很大并且必须处理同时发生的多个干扰(即,与某些感测任务相关联的突发事件,导致工作负载突然改变)时。本文介绍了一种新颖的分布式动态数据包调度框架D-2-PaS。 D-2-PaS能够处理干扰并最大程度地减少丢弃的数据包的数量,同时确保所有因干扰而导致的关键事件都能在其截止日期之前得到处理。作为一种分布式方法,D-2-PaS在各个节点上本地构建调度表,这大大减少了网关要广播的调度表相关信息的数量。作为一种动态方法,D-2-PaS应用了一种轻量级的数据包丢弃算法来确定网关上的在线数据包,以响应干扰而丢弃哪些数据包,并将此信息分发给网络。 D-2-PaS已在多跳RTWN测试床上实现,以验证其在硬件和流行的RTWN堆栈上的适用性。测试台测量和广泛的仿真结果都证明了D-2-PaS的有效性。

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