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IEEE 802.11be无线局域网中的多链路操作:退避溢出问题与解决方案

Multilink Operation in IEEE 802.11be Wireless LANs: Backoff Overflow Problem and Solutions.

作者信息

Murti Wisnu, Yun Ji-Hoon

机构信息

Department of Electrical and Information Engineering, Seoul National University of Science and Technology, Seoul 01811, Korea.

出版信息

Sensors (Basel). 2022 May 4;22(9):3501. doi: 10.3390/s22093501.

Abstract

The next-generation wireless LAN standard named IEEE 802.11be supports a multilink operation to cost-efficiently boost throughput performance, for which an efficient multilink channel scheme is essential. The synchronous channel access scheme with an enhancement allowing multilink transmission before backoff completion greatly enhances the performance of multilink devices with no simultaneous transmit and receive capability, for which, however, backoff count compensation is necessary for coexistence with legacy and other multilink devices. In this paper, we identify the backoff count overflow problem of the enhanced synchronous channel access scheme with backoff compensation, which becomes aggravated once triggered due to repeated compensations. Then, we propose four solutions to mitigate this problem: limiting consecutive free-riding transmissions, limiting a compensated backoff value, using the contention window value of a main link, and balancing transmissions between links. Through comparative evaluation and analyses for dense single-spot and indoor random deployment scenarios, we demonstrate in terms of throughput and latency that the proposed solutions successfully mitigate the problem while preserving the coexistence performance.

摘要

名为IEEE 802.11be的下一代无线局域网标准支持多链路操作,以经济高效地提高吞吐量性能,为此,高效的多链路信道方案至关重要。具有增强功能的同步信道接入方案允许在退避完成之前进行多链路传输,这极大地提高了不具备同时发送和接收能力的多链路设备的性能,然而,为了与传统设备和其他多链路设备共存,需要进行退避计数补偿。在本文中,我们识别了具有退避补偿的增强型同步信道接入方案的退避计数溢出问题,该问题一旦因重复补偿而触发就会加剧。然后,我们提出了四种解决方案来缓解这个问题:限制连续的搭便车传输、限制补偿后的退避值、使用主链路的竞争窗口值以及平衡链路之间的传输。通过对密集单点和室内随机部署场景的比较评估和分析,我们从吞吐量和延迟方面证明,所提出的解决方案在保持共存性能的同时成功缓解了该问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9142/9102818/0ac390de78f0/sensors-22-03501-g001.jpg

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