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A D2D-Based Solution for MTC Connectivity Problem in NOMA-Based Cellular IoT Networks: Dynamic User Grouping and Resource Allocation

机译:基于D2D基于NOMA的蜂窝IOT网络中的MTC连接问题解决方案:动态用户分组和资源分配

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In a cellular network (CN), cellular users (CUs) located nearby machine type communications (MTC) devices (MTC-Ds) may act as uplink gateways to relay data to the base station (BS). We consider non-orthogonal multiple access (NOMA) and successive interference cancellation (SIC) at the receiver to increase the number of connected devices and the spectrum efficiency. Both underlay and overlay spectrum access modes (SAMs) are considered. We introduce a dynamic user grouping (UG) concept as a practical constraint for SIC, in order to decrease the receiver complexity. Moreover, SIC constraints are introduced based on a minimum signal-to-noise-plus-interference ratio (SINR) at the receiver. We formulate a joint dynamic UG, power allocation, and resource block (RB) assignment problem, aiming at maximizing the total sum-rate of both CUs and MTC-Ds. We transform the obtained non-convex mixed-integer programming problem into a convex problem by using a quadratic fractional programming (FP). A heuristic method is also proposed to reduce complexity. Simulation results demonstrate that the proposed solution outperforms the conventional CN (C-CN) method and the results of the proposed optimization methods are close to optimal solution obtained by the exhaustive search (ES) algorithm in terms of total average sum-rate and network connectivity, while requiring less transmit power. The heuristic method decrease the computational complexity of the FP method at the expense of a small reduction in spectrum efficiency.
机译:在蜂窝网络(CN)中,位于机器类型通信(MTC)设备(MTC-DS)附近的蜂窝用户(CU)可以充当用于将数据中继到基站(BS)的上行链路网关。我们考虑在接收器处的非正交多次访问(NOMA)和连续的干扰消除(SIC)以增加连接设备的数量和频谱效率。考虑衬垫和覆盖频谱访问模式(SAMS)。我们将动态用户分组(UG)概念介绍为SIC的实际约束,以降低接收器复杂性。此外,基于接收器处的最小信噪比加干扰比(SINR)来引入SIC约束。我们制定联合动态UG,功率分配和资源块(RB)分配问题,旨在最大限度地提高CU和MTC-DS的总数据速率。我们通过使用二次分数编程(FP)将所获得的非凸混合整数编程问题转换为凸面问题。还提出了一种启发式方法来降低复杂性。仿真结果表明,所提出的解决方案优于传统的CN(C-C-CN)方法,并且所提出的优化方法的结果接近通过穷举搜索(ES)算法在总平均和平和网络连接方面获得的最佳解决方案,同时需要较少的传输功率。启发式方法以频谱效率的小降低为代价降低FP方法的计算复杂性。

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