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Outage protection for cellular-mode users in device-to-device communications through stochastic optimization

机译:通过随机优化在设备间通信中为蜂窝模式用户提供断电保护

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AbstractIn device-to-device (D2D) communications, the stochastic nature of the wireless channel causes the coexistence problem between cellular-mode and D2D-mode users a nontrivial task, especially when protection of cellular-mode users is strictly required. While related work has investigated the interference management problem in different scenarios, most approaches have considered only the long-term channel gain without explicitly addressing the randomness of the channel. In this paper, we aim to investigate the problem of D2D-mode users sharing the same radio resource blocks with the cellular-mode user under Rayleigh channel fading through stochastic optimization. Our objective is to determine the transmission powers of all D2D-mode users for optimizing their sum data rates while ensuring the outage probability of data sent by the cellular-mode user to stay below the desired protection threshold. We first introduce a new technique to transform both the objective and constraint functions involving random variables into equivalent yet deterministic forms. Since the formulated problem is non-linear and non-convex, we further tighten the upper bound of the transmission power constraint to reduce the complexity and uncertainty of searching for the optimal solution. To solve the formulated problem, we propose two different algorithms: the first algorithm reformulates and solves the problem as a linear programming (LP) problem while the second algorithm directly solves the non-linear problem based on the meta-heuristic of differential evolution (DE). Simulation results demonstrate that using the proposed algorithms the outage probability of the cellular-mode user can be maintained below the desired threshold despite the uncertainty of channel conditions, while the sum rate of D2D-mode users outperforms baseline methods under the same constraint.
机译: 摘要 在设备到设备(D2D)通信中,无线信道的随机性会导致蜂窝模式用户和D2D模式用户之间的共存问题不平凡,特别是在严格要求保护蜂窝模式用户时。尽管相关工作已经研究了不同情况下的干扰管理问题,但是大多数方法只考虑了长期信道增益,而没有明确解决信道的随机性。在本文中,我们旨在通过随机优化研究在瑞利信道衰落下与蜂窝模式用户共享相同无线电资源块的D2D模式用户问题。我们的目标是确定所有D2D模式用户的传输功率,以优化他们的总数据速率,同时确保蜂窝模式用户发送的数据的中断概率保持在所需的保护阈值以下。我们首先介绍一种新技术,将涉及随机变量的目标函数和约束函数转换为等效但确定的形式。由于提出的问题是非线性和非凸的,因此我们进一步收紧了传输功率约束的上限,以减少寻找最优解的复杂性和不确定性。为了解决提出的问题,我们提出了两种不同的算法:第一种算法将问题重新制定并解决为线性规划(LP)问题,而第二种算法则基于差分演化的元启发式算法直接解决了非线性问题。 )。仿真结果表明,在信道条件不确定的情况下,所提算法能够将蜂窝模式用户的中断概率保持在期望阈值以下,而在相同约束下,D2D模式用户的总和率优于基线方法。 ce:simple-para>

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