衰落C-RAN上行链路的混合延迟约束

Homa Nikbakht, M. Wigger, W. Hachem, S. Shamai
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引用次数: 8

摘要

考虑一种云无线接入网(C-RAN),其中从用户设备(ue)到基站(BSs)的第一跳由衰落的Wyner软切换模型建模。重点是混合延迟约束,其中一组消息(所谓的“慢”消息)在云单元(CU)中联合解码,而其余消息(称为“快”消息)必须在BSs上立即解码。本文给出了这种设置的容量区域的内外边界。此外,对复用增益区域进行了精确表征。结果表明,在前传容量较小的情况下,同时发送“快”和“慢”消息是有益的。然而,当“快速”消息的速率已经很大时,进一步增加它,会使系统的总和速率恶化。在这种情况下,对“快速”消息的严格解码延迟会影响整体性能。我们的研究结果表明,在中等信噪比下这种损失比在高信噪比下更大,并且随机时变衰落系数比静态衰落系数更大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mixed Delay Constraints on a Fading C-RAN Uplink
A cloud radio access network (C-RAN) is considered where the first hop from the user equipments (UEs) to the basestations (BSs) is modeled by the fading Wyner soft-handoff model. The focus is on mixed-delay constraints where a set of messages (so called “slow” messages) are jointly decoded in the cloud unit (CU), whereas the remaining messages (called “fast” messages) have to be decoded immediately at the BSs. This paper presents inner and outer bounds on the capacity region for such a setup. Moreover, the multiplexing gain region is characterized exactly. The presented results show that for small fronthaul capacity it is beneficial to send both “fast” and “slow” messages. However, when the rate of “fast” messages is already large, then increasing it further, deteriorates the sum-rate of the system. In this regime, the stringent decoding delay on the “fast” messages penalizes the overall performance. Our results indicate that this penalty is larger at moderate SNR than at high SNR and it is also larger for random time-varying fading coefficients than for static ones.
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