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Outage Probability of Device to Device Communications Underlaying Cellular Network in Suzuki Fading Channel

机译:铃木衰落信道中蜂窝网络下设备到设备通信的中断概率

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Radio resource allocation in device-to-device (D2D) communications can be optimized by minimizing outage probability or maximizing throughput. In this letter, we derive two closed-form expressions for the outage probability of underlay D2D communications, by considering an additive white Gaussian noise, and large-scale and small-scale fading components. We jointly model small and large scale fading components by the Suzuki distribution and derive non-analytic integrals for the outage probability, which can be solved by Gauss–Laguerre quadrature and Gauss–Legendre quadrature numerical methods. We show that these formulas for the outage probability closely approach the simulation results. Our comparative study further shows that a low-complexity approximation belongs to the three-point Gauss–Legendre-based formula. Finally, random-based and Hungarian-based resource allocations are investigated.
机译:可以通过最小化中断概率或最大化吞吐量来优化设备到设备(D2D)通信中的无线电资源分配。在这封信中,我们通过考虑加性高斯白噪声以及大规模和小规模衰落分量,得出了底层D2D通信中断概率的两个闭式表达式。我们通过Suzuki分布对小型和大型衰落分量进行联合建模,并得出中断概率的非解析积分,这可以通过高斯-拉格瑞正交和高斯-勒格兰德正交数值方法求解。我们表明,这些中断概率的公式非常接近仿真结果。我们的比较研究进一步表明,低复杂度近似属于基于三点高斯-勒让德式的公式。最后,研究了基于随机和匈牙利的资源分配。

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