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NOMA-Based Energy-Efficient Wireless Powered Communications

机译:基于NOMA的节能无线通信

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In this paper, we study the performance of non-orthogonal multiple access (NOMA) schemes in wireless powered communication networks (WPCN) focusing on the system energy efficiency (EE). We consider multiple energy harvesting user equipments (UEs) that operate based on harvest-then-transmit protocol. The uplink information transfer is carried out by using power-domain multiplexing, and the receiver decodes each UE’s data in such a way that the UE with the best channel gain is decoded without interference. In order to determine optimal resource allocation strategies, we formulate optimization problems considering two models, namely half-duplex and asynchronous transmission, based on how downlink and uplink operations are coordinated. In both cases, we have concave-linear fractional problems, and hence Dinkelbach’s method can be applied to obtain the globally optimal solutions. Thus, we first derive analytical expressions for the harvesting interval, and then we provide an algorithm to describe the complete procedure. Furthermore, we incorporate delay-limited sources and investigate the impact of statistical queuing constraints on the energy-efficient allocation of operating intervals. We formulate an optimization problem that maximizes the system effective-EE while UEs are applying NOMA scheme for uplink information transfer. Since the problem satisfies pseudo-concavity, we provide an iterative algorithm using bisection method to determine the unique solution. In the numerical results, we observe that broadcasting at higher power level is more energy efficient for WPCN with uplink NOMA. Additionally, exponential decay quality of service parameter has considerable impact on the optimal solution, and in the presence of strict constraints, more time is allocated for downlink interval under half-duplex operation with uplink time-division multiple access mode.
机译:在本文中,我们重点研究系统能效(EE),研究无线通信网络(WPCN)中非正交多址(NOMA)方案的性能。我们考虑了基于能量收集然后传输协议运行的多个能量收集用户设备(UE)。上行链路信息传输是通过使用功率域多路复用进行的,接收器以这样一种方式对每个UE的数据进行解码,即,对具有最佳信道增益的UE进行解码而不会产生干扰。为了确定最佳的资源分配策略,我们基于下行链路和上行链路操作的协调方式,考虑了两个模型(半双工和异步传输)来制定优化问题。在这两种情况下,我们都有凹线性分数问题,因此Dinkelbach的方法可用于获得全局最优解。因此,我们首先导出收获间隔的解析表达式,然后提供一种描述完整过程的算法。此外,我们结合了延迟受限源,并研究了统计排队约束对运行间隔的节能分配的影响。我们提出了一个优化问题,可在UE将NOMA方案应用于上行链路信息传输时最大化系统有效EE。由于该问题满足伪凹性,因此我们提供了一种使用二等分法来确定唯一解的迭代算法。在数值结果中,我们观察到具有上行链路NOMA的WPCN在较高功率水平下进行广播的能效更高。此外,指数衰减的服务质量参数对最优解有很大影响,并且在存在严格约束的情况下,在具有上行链路时分多址模式的半双工操作下,为下行链路间隔分配了更多时间。

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