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CA-CWA: Channel-Aware Contention Window Adaption in IEEE 802.11ah for Soft Real-Time Industrial Applications

机译:CA-CWA:针对软实时工业应用的IEEE 802.11ah中的通道感知竞争窗口适配

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摘要

In 2016, the IEEE task group ah (TGah) released a new standard called IEEE 802.11ah, and industrial Internet of Things (IoT) is one of its typical use cases. The restricted access window (RAW) is one of the core MAC mechanisms of IEEE 802.11ah, which aims to address the collision problem in the dense wireless networks. However, in each RAW period, stations still need to contend for the channel by Distributed Coordination Function and Enhanced Distributed Channel Access (DCF/EDCA), which cannot meet the real-time requirements of most industrial applications. In this paper, we propose a channel-aware contention window adaption (CA-CWA) algorithm. The algorithm dynamically adapts the contention window based on the channel status with an external interference discrimination ability, and improves the real-time performance of the IEEE 802.11ah. To validate the real-time performance of CA-CWA, we compared CA-CWA with two other backoff algorithms with an NS-3 simulator. The results illustrate that CA-CWA has better performance than the other two algorithms in terms of packet loss rate and average delay. Compared with the other two algorithms, CA-CWA is able to support industrial applications with higher deadline constraints under the same channel conditions in IEEE 802.11ah.
机译:2016年,IEEE任务组ah(TGah)发布了一个称为IEEE 802.11ah的新标准,工业物联网(IoT)是其典型用例之一。受限访问窗口(RAW)是IEEE 802.11ah的核心MAC机制之一,旨在解决密集无线网络中的冲突问题。但是,在每个RAW期间,站点仍然需要通过分布式协调功能和增强的分布式信道访问(DCF / EDCA)来争夺信道,这不能满足大多数工业应用的实时要求。在本文中,我们提出了一种信道感知竞争窗口自适应(CA-CWA)算法。该算法具有外部干扰识别能力,可根据信道状态动态调整竞争窗口,并提高IEEE 802.11ah的实时性能。为了验证CA-CWA的实时性能,我们将CA-CWA与另外两个使用NS-3模拟器的退避算法进行了比较。结果表明,在丢包率和平均延迟方面,CA-CWA比其他两种算法具有更好的性能。与其他两种算法相比,CA-CWA能够在IEEE 802.11ah的相同信道条件下支持具有更高期限限制的工业应用。

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