Joint resource scheduling for full-duplex cellular system

Zhongsheng Liu, Yuan’an Liu, Fang Liu
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引用次数: 11

Abstract

In this paper, the joint resource scheduling strategies in a full-duplex cellular system are studied. In the system, the base station (BS) is enabled full-duplex transmission, while the user equipments (UEs) are still traditional half-duplex. Firstly, we propose a binary-integer programming problem concerning cell throughput and solve it through exhaustive search algorithm. Furthermore, considering the feasibility of the optimal algorithm, two suboptimal heuristic algorithms are raised: one is distance isolation algorithm, the other one is user filtering and dynamic adjustment algorithm. Then, to verify the performance of the proposed algorithms, some system level simulations are conducted in a single cell full-duplex scenario. The results show the comparison of system throughput between traditional half-duplex system and full-duplex system under different self-interference cancellation capabilities at the BS. The throughput performance of the proposed algorithms changing with self-interference cancellation capability and user number is analyzed.
全双工蜂窝系统的联合资源调度
研究了全双工蜂窝系统中的联合资源调度策略。在该系统中,基站(BS)支持全双工传输,而用户设备(ue)仍然是传统的半双工传输。首先,我们提出了一个涉及小区吞吐量的二整数规划问题,并通过穷举搜索算法求解。在此基础上,考虑到优化算法的可行性,提出了两种次优启发式算法:一种是距离隔离算法,另一种是用户过滤和动态调整算法。然后,为了验证所提出算法的性能,在单单元全双工场景下进行了一些系统级仿真。结果显示了传统半双工系统和全双工系统在不同自干扰消除能力下的系统吞吐量比较。分析了所提算法的吞吐量性能随自干扰消除能力和用户数量的变化规律。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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