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Mode Selection and Resource Allocation for Deviceto-Device Communications in 5G Cellular Networks 被引量:6

Mode Selection and Resource Allocation for Deviceto-Device Communications in 5G Cellular Networks
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摘要 To meet the increasing demand of wireless broadband applications in future 5G cellular networks, Device-to-Device(D2D) communications serve as a candidate paradigm to improve spectrum efficiency. Considering the challenges after D2 D transmission is introduced for future cellular networks, this paper deals with mode selection and resource allocation issues related with D2 D communications. First, we propose a mode selection scheme which aims at guaranteeing the transmission of cellular users and also considering the potential interference. We analyze the condition under which D2 D underlay mode should be used. Second, we answer the question of "how to effectively reuse cellular resource once underlaying mode is adopted". We further present a resource allocation scheme that focuses on minimizing overall interference as well as a power control method to improve the performance of D2 D systems. Simulation results demonstrate that system parameters greatly affect the switching condition of mode selection and probability of choosing underlay mode. Furthermore, for D2 D underlaying scenario, the proposed resource allocation algorithm guarantees the transmission of cellular users with consideration of transmission requirements of D2 D users. Hence, the proposed scheme can achieve better user experience. To meet the increasing demand of wireless broadband applications in future 5G cellular networks, Device-to-Device(D2D) communications serve as a candidate paradigm to improve spectrum efficiency. Considering the challenges after D2 D transmission is introduced for future cellular networks, this paper deals with mode selection and resource allocation issues related with D2 D communications. First, we propose a mode selection scheme which aims at guaranteeing the transmission of cellular users and also considering the potential interference. We analyze the condition under which D2 D underlay mode should be used. Second, we answer the question of "how to effectively reuse cellular resource once underlaying mode is adopted". We further present a resource allocation scheme that focuses on minimizing overall interference as well as a power control method to improve the performance of D2 D systems. Simulation results demonstrate that system parameters greatly affect the switching condition of mode selection and probability of choosing underlay mode. Furthermore, for D2 D underlaying scenario, the proposed resource allocation algorithm guarantees the transmission of cellular users with consideration of transmission requirements of D2 D users. Hence, the proposed scheme can achieve better user experience.
出处 《China Communications》 SCIE CSCD 2016年第6期32-47,共16页 中国通信(英文版)
基金 supported by the National Natural Science Foundation of China(No.61501371) National 863 High Tech R&D Program of China(project number:2014AA01A703) National Science and Technology Major Project of the Ministry of Science and Technology of China(project number:2014ZX03001025-006) The international Exchange and Cooperation Projects of Shaanxi Province(project number:2016KW-046)
关键词 资源分配算法 蜂窝网络 通信 设备 装置 高频谱效率 宽带应用 移动网络 device-to-device communication mode selection resource allocation power control
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参考文献27

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