Joint user scheduling and power optimization in full-duplex cells with successive interference cancellation

Shahram Shahsavari, David Ramírez, E. Erkip
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引用次数: 5

Abstract

This paper considers a cellular system with a full-duplex base station and half-duplex users. The base station can activate one user in uplink or downlink (half-duplex mode), or two different users one in each direction simultaneously (full-duplex mode). Simultaneous transmissions in uplink and downlink causes self-interference at the base station and uplink-to-downlink interference at the downlink user. Although uplink-to-downlink interference is typically treated as noise, it is shown that successive interference decoding and cancellation (SIC mode) can lead to significant improvement in network utility, especially when user distribution is concentrated around a few hotspots. The proposed temporal fair user scheduling algorithm and corresponding power optimization utilizes full-duplex and SIC modes as well as half-duplex transmissions based on their impact on network utility. Simulation results reveal that the proposed strategy can achieve up to 95% average cell throughput improvement in typical indoor scenarios with respect to a conventional network in which the base station is half-duplex.
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具有连续干扰消除的全双工小区联合用户调度和功率优化
本文研究了一种具有全双工基站和半双工用户的蜂窝系统。基站可以在上行链路或下行链路激活一个用户(半双工模式),也可以在每个方向同时激活两个不同的用户(全双工模式)。上行链路和下行链路同时传输会导致基站的自干扰和下行链路用户的上行链路到下行链路的干扰。虽然上行链路到下行链路的干扰通常被视为噪声,但研究表明,连续干扰解码和消除(SIC模式)可以显著提高网络效用,特别是当用户分布集中在几个热点附近时。提出的时间公平用户调度算法和相应的功率优化利用全双工和SIC模式以及半双工传输,基于它们对网络效用的影响。仿真结果表明,在典型的室内场景中,与传统的半双工基站网络相比,所提出的策略可以实现高达95%的平均小区吞吐量提高。
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