全双工综合接入回程中最优带宽分配比分析

Takuya Yashima, Hiroki Nishiyama
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引用次数: 0

摘要

IAB (Integrated access and backhaul)是第三代合作伙伴计划(3rd Generation Partnership Project, 3GPP)为降低回程链路(backhaul)的成本,以无线链路取代光纤链路,构建比现有网络更灵活的网络而引入的。本文重点介绍了IAB中资源复用的增强。在Release 16的IAB中,3GPP支持半双工IAB,而在Release 17中,3GPP考虑全双工(FD) IAB。在FD IAB中,系统带宽的总和是固定的,我们可以将带宽划分到每个信道中。在本文中,我们重点研究了以往研究提出的频分多路FD IAB系统,其中IAB节点不经历自干扰。为了明确系统的性能潜力,本研究没有考虑交联干扰和具体的无线性质。我们分析了最优的BW分配比,以最大限度地提高系统的频谱效率。结果表明,该比率与信道条件有关,如用户设备的信噪比和最小速率保证按一定规律变化。
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Analysis of Optimal Bandwidth Partitioning Ratio in Full-Duplex Integrated Access and Backhaul
Integrated access and backhaul (IAB) was intro-duced by the 3rd Generation Partnership Project (3GPP) to reduce the cost of backhaul links (BL) and construct networks that are more flexible than existing networks by replacing fiber BL with wireless BL. In this paper, we highlight enhancements of resource duplexing in IAB. In the IAB of Release 16, 3GPP supported half-duplex IAB, whereas in Release 17, 3GPP is considering full-duplex (FD) IAB. In FD IAB, the sum of the system's bandwidth (BW) is fixed, and we can partition the BW into each channel. In this paper, we focus on the frequency-division multi- plexing FD IAB system proposed by previous research, where the IAB nodes do not experience self-interference. To clarify the system's performance potential, the cross-link interference and concrete wireless nature are not taken into account in this study. We analyze the optimal BW partitioning ratio to maximize the system's spectral efficiency. Our results show that the ratio is dependent on channel conditions, for example, the signal-to- noise ratio and the minimum rate guarantee of user equipments according to a certain rule.
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