基于交叉协议的V-RAN中的联合基站休眠与功能分裂编排

Zhenghe Zhu, Hang Li, Yawen Chen, X. Wen, Zhaoming Lu, Luhan Wang
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引用次数: 0

摘要

无线接入网中基站的密集部署带来了巨大的能耗和运营开销。虽然集中式RAN (C-RAN)架构可以通过集中BS功能来显著减轻BS开销,但C-RAN严格的前传要求使得实现完全集中式RAN具有挑战性。最近,虚拟化RAN (V-RAN)架构被提出,允许灵活的功能分割(FS)和交叉传输来平衡集中式和中程需求。另一方面,考虑到流量的潮汐效应,休眠一些低负载的BSs,并将其流量迁移到其他BSs是进一步降低能耗的有效方法。在本文中,我们研究了基于交叉路由的V-RAN中的联合BS睡眠和FS编排,共同优化BS工作模式、FS、流量迁移和路由选择。该联合优化模型采用混合整数非线性规划(MINLP)的形式,实现了包括RAN能耗和运营开销在内的总支出最小化。考虑到问题的复杂性,我们提出了一个在多项式时间内求解的启发式算法。仿真结果表明,与基线相比,我们的算法可以节省大量的开销,并且可以在较短的时间内达到最优值的1.13倍以内。
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Joint Base Station Sleeping and Functional Split Orchestration in Crosshaul-Based V-RAN
The intensive deployment of base stations (BSs) in the radio access network (RAN) incurs huge energy consumption and operating overheads. Although the centralized RAN (C-RAN) architecture can significantly relieve the BS overheads by centralizing BS functions, the strict front-haul requirements of C-RAN make it challenging to realize a fully centralized RAN. Recently, the virtualized RAN (V-RAN) architecture has been proposed, allowing flexible function split (FS) and crosshaul to balance the centralization and mid-haul requirements. On the other hand, considering the tidal effect of traffic, sleep some BSs with low loads and migrating their traffic to other BSs is an effective way to further reduce energy consumption. In this paper, we investigate joint BS sleeping and FS orchestration in crosshaul-based V-RAN that jointly optimizes BS working mode, FS, traffic migration, and routing selection. The joint optimization model is formulated as a mixed-integer nonlinear programming (MINLP) that minimizes total expenditure, including RAN energy consumption and operating overheads. Considering the complexity of the problem, we propose a heuristic algorithm to solve it in polynomial time. Simulation results validate that our algorithm can save significant expenditure compared to baselines, and the results can reach within 1.13 times the optimum in a relatively short time.
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