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Dynamic In-band Self-backhauling for 5G Systems with Inter-cell Resource Coordination

机译:小区间资源协调的5G系统动态带内自回传

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5G systems are expected to utilize frequency bands above 6 GHz in the so-called millimeter-wave (mm Wave) spectrum because of large bandwidths. It is well know that higher carrier frequency bands suffer from higher path loss attenuation. It addition, dynamic blockages can be a challenge for achieving good coverage. Therefore, millimeter-wave deployments require cell densification to achieve high data rates. However, densification further leads to challenges in the system design because of the need for low cost backhaul. The concept of wireless self-backhauling (sBH) aims to provide a provide a backhaul solution at reduced cost. Self-backhaul solution makes use of integrated access and backhaul (IAB) at each base station to realize on-demand flexible backhaul and access. In this paper, we investigate the performance of in-band self-backhauling with integrated access and backhaul in a real-life street canyon scenario. We consider centralized scheduling which can effectively allocate radio resources for backhaul and access on a time slot basis with half duplex constraint. The centralized scheduler further mitigates cross-interference between backhaul and access using a beam coordination and interference cancellation. Our results show that the proposed relaying concept offers good user throughput gains for cell edge users and is also robust to offloading of users to relay cells. Results also show that interference cancellation receivers can improve the uplink and backhaul spectral efficiency in IAB deployment by around 10%.
机译:由于带宽较大,预计5G系统将在所谓的毫米波(mm Wave)频谱中使用6 GHz以上的频带。众所周知,较高的载波频带遭受较高的路径损耗衰减。此外,动态阻塞对于实现良好的覆盖范围可能是一个挑战。因此,毫米波部署需要对单元进行致密化以实现高数据速率。然而,由于需要低成本回程,致密化进一步导致了系统设计中的挑战。无线自回传(sBH)的概念旨在以降低的成本提供一种回传解决方案。自回程解决方案利用每个基站的集成访问和回程(IAB)来实现按需灵活的回程和访问。在本文中,我们研究了在真实街道峡谷场景中带内接入和回程的带内自回程性能。我们考虑集中式调度,该调度可以在具有半双工约束的时隙基础上有效地为回程和接入分配无线电资源。集中式调度器使用波束协调和干扰消除功能进一步减轻了回程和接入之间的交叉干扰。我们的结果表明,提出的中继概念为小区边缘用户提供了良好的用户吞吐量,并且对于将用户卸载到中继小区也很可靠。结果还表明,干扰消除接收机可以将IAB部署中的上行链路和回程频谱效率提高约10%。

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