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Energy Efficient Base Station Transmit Power Adaptation for Green 5G Massive MIMO Systems

机译:绿色5G大规模MIMO系统的节能基站发射功率自适应

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Characterising the fundamental energy efficiency (EE) limits of massive Multiple-Input-Multiple- Output (MIMO) systems is significant for the development of green wireless communications. This paper analyses the adaptation of optimal BS transmitted power according to channel conditions and users’ Quality of Service (QoS) requirements. The optimal BS transmitted power has the potential to be utilised as an effective strategy to reduce BSs power consumption and consequently enhance the EE of the system. Thus, this paper conducts an analytical closed-form expression of optimal downlink BS transmitted power for massive MIMO systems with Zero Forcing (ZF) beamforming processing and perfect Channel State Information (CSI). User required data rate and maximum allowable outage probability are considered as users’ QoS constraints. Both of theoretical and the simulation results, for several transmission modes, indicate that the average EE per BS is a unimodal function of the user required data rate that jointly increased up to the maximum point of EE, but further increases in the data rate can only come at a loss in average EE per BS. As the higher the data rate, the higher the circuit and transmit power consumption, due to the need for a larger number of BS antennas. The results indicate that system EE can be enhanced by reducing energy consumption through optimal BS transmitted power. This is achieved by adaptation to channel conditions and users’ QoS requirements.
机译:表征大规模多输入多输出(MIMO)系统的基本能效(EE)限制对绿色无线通信的发展具有重要意义。本文根据信道条件和用户的服务质量(QoS)要求,分析了最佳BS发射功率的适应性。最佳BS发射功率具有被用作减少BS功率消耗并因此增强系统的EE的有效策略的潜力。因此,本文对具有零强迫(ZF)波束成形处理和完美信道状态信息(CSI)的大规模MIMO系统进行了最优下行链路BS发射功率的解析封闭式表达。用户所需的数据速率和最大允许中断概率被视为用户的QoS约束。对于几种传输模式,理论和仿真结果均表明,每个BS的平均EE是用户所需数据速率的单峰函数,该速率共同提高到EE的最高点,但是数据速率的进一步提高只能每个BS的平均EE损失。数据速率越高,由于需要更多数量的BS天线,电路和发射功耗也就越高。结果表明,可以通过降低最佳BS发射功率的能耗来增强系统EE。这可以通过适应信道条件和用户的QoS要求来实现。

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