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Accurate Energy-Efficient Power Control for Uplink NOMA Systems under Delay Constraint

机译:延迟约束下的上行NOMA系统的精确节能功率控制

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Machine-type communications (MTC) devices in 5G will use the Non-orthogonal multiple access (NOMA) technology for massive connections. These devices switch between the transmission mode and the sleep mode for battery saving; and their applications may have diverse quality of service (QoS) requirements. In this paper, we develop a new uplink energy-efficient power control scheme for multiple MTC devices with the above mode transition capability and different QoS requirements. By using the effective bandwidth and the effective capacity models, the system's energy efficiency can be formulated as the ratio of the sum effective capacity to the sum energy consumption. Two new analytical models are used in system's energy efficiency maximization problem: 1) two-mode circuitry model and 2) accurate delay-outage approximation model. Simulation shows our proposed scheme is capable of providing exact delay QoS guarantees for NOMA systems.
机译:5G中的机器类型通信(MTC)设备将使用非正交多址(NOMA)技术进行大规模连接。这些设备在传输模式和睡眠模式之间切换以节省电池。并且它们的应用程序可能具有不同的服务质量(QoS)要求。在本文中,我们针对具有上述模式转换能力和不同QoS要求的多个MTC设备开发了一种新的上行链路节能功率控制方案。通过使用有效带宽和有效容量模型,可以将系统的能量效率公式化为总有效容量与总能量消耗之比。在系统的能效最大化问题中使用了两个新的分析模型:1)两模电路模型和2)精确的延迟中断近似模型。仿真表明,我们提出的方案能够为NOMA系统提供精确的延迟QoS保证。

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