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New Efficient Transmission Technique for HetNets With Massive MIMO Wireless Backhaul

机译:具有大规模MIMO无线回程的HetNet的新型高效传输技术

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In order to cope with the rapid increase in power consumption of heterogeneous cellular networks, this article proposes a new efficient transmission technique for heterogeneous networks with massive MIMO wireless backhaul with the objective of minimizing power consumption cost. We assume that transmissions on the backhaul link and the access link occur simultaneously on the same frequency band (in-band) thanks to MIMO spatial multiplexing. On the other hand, we consider that uplink and downlink transmissions are separated in time. In order to prevent multi-user and inter-tier interference, block diagonalization beamforming is considered at the macro base station (MBS) and the signal from the small base station (SBS) to the MBS is transmitted orthogonally to the channel of the SBS's users. The problem of minimizing the transmit power of base stations under users minimum-rate constraints is formulated. We first derive analytically the optimal time splitting parameter and the allocated transmit power considering that the inter-SBS interference is generated by fixed power. Next, we solve the power allocation problem when the generated inter-SBS interference is no longer considered fixed by proposing an efficient iterative power allocation algorithm. A heuristic user scheduling algorithm is devised in order to deal with the feasibility problem. Finally, simulations validate our analysis and show that the proposed transmission technique outperforms the conventional reverse time division duplex with bandwidth splitting (out-band) in terms of total power consumption.
机译:为了应对异构蜂窝网络功耗的快速增长,本文提出了一种新的高效传输技术,用于具有大规模MIMO无线回程的异构网络,目的是将功耗成本降至最低。我们假设由于MIMO空间复用,回程链路和接入链路上的传输同时在同一频带(带内)发生。另一方面,我们认为上行链路和下行链路传输在时间上是分开的。为了防止多用户和层间干扰,在宏基站(MBS)上考虑了块对角化波束成形,并且从小型基站(SBS)到MBS的信号正交发送到SBS用户的信道。提出了在用户最小速率约束下最小化基站发射功率的问题。考虑到SBS间干扰是由固定功率产生的,我们首先通过分析得出最佳的时间分割参数和分配的发射功率。接下来,通过提出一种有效的迭代功率分配算法,当不再将生成的SBS间干扰视为固定时,我们解决功率分配问题。为了解决可行性问题,设计了启发式用户调度算法。最后,仿真验证了我们的分析结果,结果表明,所提出的传输技术在总功耗方面优于带宽分配(带外)的传统反向时分双工。

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