A Novel DCT-Based Compression Scheme for 5G Vehicular Networks
Author | Su Y. |
Author | Lu X. |
Author | Huang L. |
Author | Du X. |
Author | Guizani M. |
Available date | 2020-04-01T09:45:58Z |
Publication Date | 2019 |
Publication Name | IEEE Transactions on Vehicular Technology |
Resource | Scopus |
ISSN | 189545 |
Abstract | Next-generation (5G) vehicular networks will support various network applications, leading to specific requirements and challenges for wireless access technologies. This trend has motivated the development of the long-term evolution-vehicle (LTE-V) network, a 5G cellular-based vehicular technology. Due to the limited bandwidth for vehicular communications, it is important to efficiently utilize slim spectrum resources in vehicular networks. In this paper, we introduce a cloud radio access network (C-RAN)-based vehicular network architecture, named C-VRAN, which facilitates efficient management and centralized processing of vehicular networks. Furthermore, we propose a discrete cosine transform (DCT)-based data compression scheme for C-VRAN to enhance the effective data rate of the fronthaul network. This scheme first uses DCT to perform time-frequency conversion of LTE-V I/Q data and then utilizes the Lloyd-Max algorithm to quantify data in the frequency domain before finally selecting an appropriate coding scheme to achieve better performance. Simulation results show that the proposed scheme can achieve 3 times compression ratio within 1% error vector amplitude distortion, and it also has strong independence and versatility, allowing it to be used as a standalone module for the current LTE-V system. - 1967-2012 IEEE. |
Sponsor | Manuscript received January 14, 2019; revised June 10, 2019 and August 5, 2019; accepted August 25, 2019. Date of publication September 5, 2019; date of current version November 12, 2019. This work was supported in part by the US National Science Foundation (NSF) under Grants CNS-1564128 and CNS-1824440. The review of this article was coordinated by Dr. A. J. Al-Dweik. (Corresponding author: Lianfen Huang.) Y. Su, X. Lu, and L. Huang are with the Key Laboratory of Digital Fujian on IoT Communication, Architecture and Safety Technology, Xia-men University, Xiamen 361005, China (e-mail: suyuhan066@foxmail.com; 543luxiaozhen@gmail.com; lfhuang@xmu.edu.cn). |
Language | en |
Publisher | Institute of Electrical and Electronics Engineers Inc. |
Subject | 5G Data compression discrete cosine transform Lloyd-Max vehicular networks |
Type | Article |
Pagination | 10872-10881 |
Issue Number | 11 |
Volume Number | 68 |
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