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Non-Orthogonal Resource Sharing Optimization for D2D Communication in LTE-A Cellular Networks: A Fractional Frequency Reuse-Based Approach

机译:LTE-A蜂窝网络D2D通信的非正交资源共享优化:基于分数频率重用的方法

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摘要

To handle the fast-growing demand for high data rate applications, the capacity of cellular networks should be reinforced. However, the available radio resources in cellular networks are scarce, and their formulation is expensive. The state-of-the art solution to this problem is a new local networking technology known as the device-to-device (D2D) communication. D2D communications have great capability in achieving outstanding performance by reusing the existing uplink cellular channel resources. In D2D communication, two devices in close proximity can communicate directly without traversing data traffic through the evolved-NodeB (eNB). This results in a reduced traffic load to the eNB, reduced end-to-end delay, and improved spectral efficiency and system performance. However, enabling D2D communication in an LTE-Advanced (LTE-A) cellular network causes severe interference to traditional cellular users and D2D pairs. To maintain the quality of service (QoS) of the cellular users and D2D pairs and reduce the interference, we propose a distance-based resource allocation and power control scheme using fractional frequency reuse (FFR) technique. We calculate the system outage probability, total throughput and spectrum efficiency for both cellular users and D2D pairs in terms of their signal-to-interference-plus-noise ratio (SINR). Our simulation results show that the proposed scheme reduces interference significantly and improves system performance compared to the random resource allocation (RRA) and resource allocation (RA) without sectorization scheme.
机译:为了处理对高数据速率应用的快速增长需求,应加强蜂窝网络的容量。然而,蜂窝网络中的可用无线电资源稀缺,其配方昂贵。对此问题的最先进的解决方案是称为设备到设备(D2D)通信的新本地网络技术。 D2D通信具有通过重用现有的上行链路蜂窝通道资源来实现出色性能的能力。在D2D通信中,近距离接近的两个设备可以直接通信,而不通过演进节点(eNB)进行数据流量。这导致对eNB的交通负荷降低,降低端到端延迟,以及改善的频谱效率和系统性能。然而,在LTE-Advanced(LTE-A)蜂窝网络中实现D2D通信导致对传统蜂窝用户和D2D对的严重干扰。为了维持蜂窝用户和D2D对的服务质量(QoS)并降低干扰,我们提出了一种使用分数频率重用(FFR)技术的距离基资源分配和功率控制方案。在其信号到干扰 - 热噪声比(SINR)方面,我们计算蜂窝用户和D2D对的系统中断概率,总吞吐量和频谱效率。我们的仿真结果表明,与没有扇区化方案的随机资源分配(RRA)和资源分配(RA)相比,该方案显着降低了干扰,提高了系统性能。

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