Mai Elshreay, Eman Serag, Hussien M. Elattar, Hesham Elbadawy
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引用次数: 0
摘要
即将推出的 6G 网络预计将大力整合设备到设备 (D2D) 技术。D2D 技术的主要优势之一是可以最大限度地减少蜂窝基站的负荷,从而有助于延长蜂窝网络基础设施的使用寿命。D2D 组播通信可通过重复使用蜂窝网络的相同资源,最大限度地提高能效和设备寿命,从而满足局域服务对多媒体内容日益增长的需求。本文利用一对多 Gale Shapley 配对算法(GSA)研究了一种高效的资源分配方案,以实现高效分配和功率优化。我们为 D2MD 集群提出了一种联合优化方法,该方法考虑了设备电池的信噪比和能量水平。该问题需要优化,因此分为两个凸子问题。在第一个子问题中,使用 Dinkelbach 匹配算法为每个候选簇头(CH)和蜂窝用户进行功率分配,以实现能效最大化。在第二个子问题中,使用一对多 Gale Shapley 匹配算法优化资源分配和簇头选择,以选择簇节点(CRns)组成簇。大量研究表明,在 D2D 应用中,所建议的技术既能保持 QoS,又能将电池电量要求降到最低,同时还能提高簇头的寿命和能源效率(EE)。
D2D Matching Techniques for Resource Allocation Management and Power Control Management in B5G/6G
The upcoming 6G network is expected to have a great integration of Device-to-Device (D2D) technology. One of the key advantages of D2D technology is its potential to minimize the load on cellular base stations, which can help extend the lifespan of cellular network infrastructure. D2D multicast communication can meet the growing demand for multimedia content in local area services by maximizing energy efficiency and device lifespan by reusing the same resources for the cellular network. In this paper, we investigate an efficient resource allocation scheme by using the One-To-Many Gale Shapley pairing algorithm (GSA) for efficient allocation and power optimization. We propose a joint optimization approach for D2MD clusters that considers the Signal-to-Interference Noise ratio and energy levels of devices' batteries. The problem is optimized, so it is divided into two convex sub-problems. In the first sub-problem, power allocation is performed for each candidate cluster-head (CH)and cellular user to maximize energy efficiency using the Dinkelbach matching algorithm. In the second sub-problem, the One-to-Many Gale Shapley matching algorithm is used to optimize resource allocation and cluster-head selection to select the Cluster Nodes (CRns) to form the cluster. Numerous investigations show that the suggested technique maintains QoS and minimal battery power requirements while increasing cluster-head longevity and energy efficiency (EE) in D2D applications.