CSMA-Based Utility-Optimal Scheduling in the WLAN With a Full-Duplex Access Point
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影响因子:3.367
DOI码:10.1109/ACCESS.2018.2859260
所属单位:School of ComputerScience and Information Engineering, Hefei University of Technology
发表刊物:IEEE Access
项目来源:National Natural Science Foundation of China under Grants 61571178, and 61501160."
关键字:Full-duplex, access-intensity, wireless network, CSMA protocol, geometric programming.
摘要:Full-duplex wireless communication has been recognized as an effective technique to improve the system throughput. This paper designs a CSMA-based utility-optimal scheduling scheme to fully explore the performance improvement brought by AP's full-duplex capability. In particular, to keep the backwards compatibility of the legacy users, we allow users to compete to access the channel using the CSMA protocol in their uplink transmissions while let the AP select its downlink user to communicate with for completing the full-duplex transmission upon each uplink access. Moreover, to achieve the optimal system utility, we then formulate an optimization problem of maximizing the downlink aggregate utility subject to the uplink users' data rate constraints. The formulated problem falls into a mixed integer nonlinear programming form, which is generally NP-hard to solve. To make the problem tractable, we divide it into user pairing and access-intensity adjustment subproblems. More specifically, we devise a user pairing criterion based on the signal-to-interference-plus-noise ratio to reduce the uplink-downlink interference, and adopt the Hungarian algorithm to find the best matching between uplink and downlink users. After that, we adjust the access-intensity of users (i.e., the ratio of the mean packet transmission time to the mean backoff time) to maximize the downlink aggregate utility based on the geometric programming. Simulation results are presented to evaluate the performance of our scheduling design and demonstrate the downlink aggregate utility improvement compared to other scheduling schemes in full-duplex WLANs.
合写作者:Tianyu Huang,Lusheng Wang,Yu Gu
第一作者:Caihong Kai
论文类型:期刊论文
学科门类:工学
文献类型:J
卷号:6
页面范围:2169-3536
ISSN号:2169-3536
是否译文:否
发表时间:2018-07-24
收录刊物:SCI、EI