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Energy-Efficient Deployment of a Non-Orthogonal Multiple Access Unmanned Aerial System

机译:节能部署非正交多址无人机系统

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In this work, we propose a methodology for the energy-efficient placement of an unmanned aerial system (UAS) deployed to collect data from a set of ground user equipments (UEs). The data-communication between the UEs and the UxNB, a radio access node carried by an unmanned aerial vehicle (UAV), of the UAS follows a non-orthogonal multiple-access (NOMA) scheme; in which all the UEs share the same time and frequency resources. The receiver removes the inter-UE interference from the co-channel UEs through joint implementation of a power-reduction technique at the UEs and the successive interference cancellation (SIC) at the receiver. Firstly, a new energy-efficiency metric, area energy efficiency (AEE) representing the total area covered by a UxNB per Watt-Hour (Wh) of energy consumed, is introduced. Then, the optimal hovering altitude of the UxNB that maximizes the AEE is determined using the proposed algorithm. Numerical evaluations show that the obtained solution using the proposed algorithm matches the globally optimal solution, and the proposed NOMA scheme prevails over an equivalent orthogonal multiple access (OMA) scheme, in terms of the AEE.
机译:在这项工作中,我们提出了一种用于从一组接地用户设备(UE)的无人机系统(UA)的节能放置的方法。 UE和UXNB之间的数据通信,UA的无人航空车辆(UAV)承载的无线电接入节点,遵循非正交的多址(NOMA)方案;其中所有UE在相同的时间和频率资源中共享。接收器通过在UE处的UE和连续的干扰消除(SIC)处通过联合实现来自所述CO-CHANDOCH UE的UE间干扰。首先,介绍了一种新的能效公制,区域能效(AEE),其代表由每小时(WH)能量的UXNB覆盖的总面积。然后,使用该算法确定最大化AEE的UXNB的最佳悬停高度。数值评估表明,使用该算法的所得解决方案与全球最佳解决方案匹配,并且在AEE方面,所提出的NOMA方案占上同同等的正交多址(OMA)方案。

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