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首页> 外文期刊>IEEE Transactions on Vehicular Technology >QoS-Aware Resource Allocation for Device-to-Device Communications With Channel Uncertainty
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QoS-Aware Resource Allocation for Device-to-Device Communications With Channel Uncertainty

机译:具有通道不确定性的设备间通信的QoS感知资源分配

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In device-to-device (D2D) communications, channel state information (CSI) is exploited to manage the interference between D2D users and regular cellular users (CUs) and improve system performance. However, obtaining the accurate CSI is usually difficult and causes high overhead, particularly when the links are not connected to the base station (BS), such as the links between regular CUs and D2D receivers (CU-D links). In this paper, we investigate the signaling overhead and performance tradeoff in D2D communications with channel uncertainty. To limit interference to regular CUs, we only allow the resource of a CU to be reused by, at most, one D2D pair. We also assume that only partial CSI of the CU-D links is available at the BS and develop two different strategies to deal with the channel uncertainty, namely, probabilistic and partial feedback schemes. We first derive a probability-based resource-allocation scheme by utilizing channel statistical characteristics to maximize the overall throughput of the CUs and admissible D2D pairs while guaranteeing their quality of service (QoS) in terms of signal-to-interference-plus-noise ratio (SINR) and outage probability, respectively. Then, we propose an efficient feedback scheme to reduce the overhead of CSI feedback while providing near-optimal performance. In addition, we propose a combined scheme to take advantages of both probabilistic and partial feedback schemes. It is shown by simulation that there exists an optimal threshold of the outage probability for probabilistic scheme while the partial feedback scheme is robust to the channel models. Furthermore, the combined scheme outperforms the probabilistic and the partial feedback schemes in terms of overall throughput.
机译:在设备到设备(D2D)通信中,利用信道状态信息(CSI)来管理D2D用户与常规蜂窝用户(CU)之间的干扰并提高系统性能。但是,获得准确的CSI通常很困难,并且会导致较高的开销,尤其是当链路未连接到基站(BS)时,例如常规CU和D2D接收器之间的链路(CU-D链路)。在本文中,我们研究具有信道不确定性的D2D通信中的信令开销和性能折衷。为了限制对常规CU的干扰,我们最多只允许一个D2D对重用CU的资源。我们还假设CU-D链路中只有部分CSI在BS可用,并开发了两种不同的策略来处理信道不确定性,即概率和部分反馈方案。我们首先通过利用信道统计特性来最大化基于CU和允许的D2D对的总体吞吐量,同时在信噪比与噪声比方面保证其服务质量(QoS)的基础上,得出基于概率的资源分配方案。 (SINR)和中断概率。然后,我们提出了一种有效的反馈方案,以减少CSI反馈的开销,同时提供接近最佳的性能。另外,我们提出了一种组合方案,以利用概率和部分反馈方案的优势。通过仿真表明,对于概率方案,存在最优的中断概率阈值,而部分反馈方案对信道模型具有鲁棒性。此外,就整体吞吐量而言,组合方案优于概率方案和部分反馈方案。

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