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ALICE: Autonomous Link-based Cell Scheduling for TSCH

机译:Alice:TSCH的基于自主链接的小区调度

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Although low-power lossy network (LLN), at its early stage, commonly used asynchronous link layer protocols for simple operation on resource-constrained nodes, development of embedded hardware and time synchronization technologies made Time-Slotted Channel Hopping (TSCH) viable in LLN (now part of IEEE 802.15.4e standard). TSCH has the potential to be a link layer solution for LLN due to its resilience to wireless interference (e.g., WiFi) and multipath fading. However, its slotted operation incurs non-trivial cell scheduling overhead: two nodes should wake up at a time-frequency cell together to exchange a packet. Efficient cell scheduling in dynamic multihop topology in wireless environments has been an open issue, preventing TSCH's wide adoption in practice. This work introduces ALICE, a novel autonomous link-based cell scheduling scheme which allocates a unique cell for each directional link (a pair of nodes and traffic direction) by closely interacting with the routing layer and using only local information, without any additional communication overhead. We implement ALICE on Contiki and evaluate its effectiveness on the IoT-LAB public testbed with 68 nodes. ALICE generally outperforms Orchestra (the state-of-the-art method) and even more so under heavy traffic and high node density, increasing throughput by 2 times with 98.3% reliability and reducing latency by 70%, route changes by 95%, and radio duty cycle by 35%. ALICE can serve as an autonomous scheduling framework, which paves the way for TSCH-based LLN to go on.
机译:虽然低功耗有损网络(LLN),在其早期阶段,常用的异步链路层协议用于资源受限节点的简单操作,嵌入式硬件和时间同步技术的开发使时隙通道跳跃(TSCH)在LLN中可行(现在是IEEE 802.15.4e标准的一部分)。 TSCH由于其对无线干扰(例如,WiFi)和多路径衰落而导致LLN的链路层解决方案。然而,其开槽操作会引发非普通小区调度开销:两个节点应在时频单元一起唤醒以交换分组。无线环境中动态多跳拓扑中的高效单元调度一直是一个开放的问题,防止TSCH在实践中广泛采用。这项工作介绍了Alice,一种基于新型的自主链路的小区调度方案,它通过与路由层密切相关并仅使用本地信息来分配每个定向链路(一对节点和流量方向)的唯一小区,而没有任何额外的通信开销。我们在Contiki上实施Alice,并评估其对具有68个节点的IOT-Lab公共测试的有效性。 Alice一般优于乐团(最先进的方法),甚至更为如此,在繁忙的交通和高节点密度下,将吞吐量提高2次,可靠性为98.3%,降低延迟70%,路线变化为95%,和无线电占空比下35%。爱丽丝可以作为自主调度框架,为TSCH的LLN铺平了道路。

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