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Social-aware spectrum sharing for D2D communication by artificial bee colony optimization

机译:人工蜂殖民地优化的D2D通信社会意识频谱共享

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Next-generation cellular networks must handle an increasing demand for data transmission resources, which requires the study of new technologies, such as Device-to-Device (D2D) communications. D2D expands the use of resources from a location perspective, and takes advantage of the geographical proximity of users to perform data transmission at high rates and low propagation delays. On the other hand, the widespread use of social networks establishes the degree of social relations among users and facilitates the efficient management of D2D communication networks. The integration of social networks and D2D communications into 5G networks has posed important challenges (e.g., exploitation of the social relationships of mobile users and management of interference and resources towards a better performance of D2D communications). This article proposes a social-aware Radio Resource Allocation (RRA) optimization solution for D2D communications in 5G networks that considers partial Channel State Information (CSI). A selected-NM Maximum Distance Ratio (MDR) q-bit feedback scheme designed reduces feedback overhead, since each D2D receiver sends only q-bit feedback CSI of N cellular User Equipment (CUE) and M D2D pairs with the largest MDR metric. The RRA problem is solved by an Artificial Bee Colony (ABC) algorithm for the obtaining of number of D2D connections in each evolved NodeB (eNB) and maximization of the system throughput.
机译:下一代蜂窝网络必须处理对数据传输资源的越来越大的需求,这需要研究新技术,例如设备到设备(D2D)通信。 D2D扩展了从位置的角度来使用资源,并利用用户的地理接近,以便以高速率和低传播延迟执行数据传输。另一方面,社交网络的广泛使用建立了用户之间的社会关系程度,并促进了D2D通信网络的有效管理。社交网络和D2D通信的整合到5G网络已经提出了重要挑战(例如,利用移动用户的社会关系以及对D2D通信的更好性能的干扰和资源管理的社会关系。本文提出了一种用于将部分信道状态信息(CSI)的5G网络中的D2D通信中的社交意识无线电资源分配(RRA)优化解决方案。所选择的NM最大距离比(MDR)Q位反馈方案设计减少了反馈开销,因为每个D2D接收器仅发送N个蜂窝用户设备(CUE)和M D2D对具有最大MDR度量的Q位反馈CSI。 RRA问题由人工蜂菌落(ABC)算法解决,用于在每个演化的节点B(eNB)中获得D2D连接数和系统吞吐量的最大化。

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