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Delay-Bounded Scheduling in IEEE 802.15.4e DSME Using Linear Programming

机译:使用线性规划的IEEE 802.15.4e DSME中的时延有界调度

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The Deterministic and Synchronous Multi-Channel Extension (DSME) protocol is a recent amendment to the IEEE 802.15.4 standard. It combines contention-based and time-division medium access, offers channel diversity, and is aimed to support IIoT applications with stringent requirements in terms of timeliness and reliability. In this paper, we show how to configure DSME for a given data collection task. This includes the definition of the slot and frame length and the slot and channel schedule. We formulate different scheduling strategies as linear programs minimizing latency and energy. We verify our results through theoretical analysis and simulations and compare them with state-of-the-art scheduling algorithms. The results indicate a reduced delay of up to 80% for deep networks while also increasing reliability. Additionally, the proposed scheduling strategies significantly reduce the required buffer size.
机译:确定性和同步多通道扩展(DSME)协议是对IEEE 802.15.4标准的最新修订。它结合了基于争用和时分的媒体访问,提供了信道多样性,旨在支持对IIoT应用的及时性和可靠性有严格要求的应用。在本文中,我们展示了如何针对给定的数据收集任务配置DSME。这包括时隙和帧长度以及时隙和信道调度的定义。我们将不同的调度策略制定为线性程序,以最大程度地减少等待时间和精力。我们通过理论分析和仿真验证了我们的结果,并将其与最新的调度算法进行了比较。结果表明,深层网络的延迟减少了多达80%,同时还提高了可靠性。此外,建议的调度策略显着减少了所需的缓冲区大小。

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