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Software-Defined Device-to-Device (D2D) Communications in Virtual Wireless Networks With Imperfect Network State Information (NSI)

机译:具有不完善的网络状态信息(NSI)的虚拟无线网络中的软件定义的设备到设备(D2D)通信

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摘要

Software-defined networking (SDN) and network function virtualization (NFV) are a promising system architecture and control mechanism for future networks. Although some works have been done on wireless SDN and NFV, recent advancements in device-to-device (D2D) communications are largely ignored in this novel framework. In this paper, we study the integration of D2D communication in the framework of SDN and NFV. An inherent challenge in supporting software-defined D2D is the imperfectness of network state information, including channel state information (CSI) and queuing state information, in virtual wireless (QSI) networks. To address this challenge, we formulate the resource sharing problem in this framework as a discrete stochastic optimization problem and develop discrete stochastic approximation algorithms to solve this problem. Such algorithms can reduce the computational complexity compared with exhaustive search while achieving satisfactory performance. Both the static wireless channel and time-varying channels are considered. Extensive simulations show that users can benefit from both wireless network virtualization and software-defined D2D communications, and our proposed scheme can achieve considerable performance gains in both system throughput and user utility under practical network settings.
机译:软件定义网络(SDN)和网络功能虚拟化(NFV)是未来网络的有希望的系统架构和控制机制。尽管已经在无线SDN和NFV上完成了一些工作,但是在这种新颖的框架中,设备到设备(D2D)通信的最新进展在很大程度上被忽略了。在本文中,我们研究了在SDN和NFV框架下D2D通信的集成。支持软件定义的D2D的固有挑战是虚拟无线(QSI)网络中网络状态信息的不完善,包括信道状态信息(CSI)和排队状态信息。为了解决这一挑战,我们在此框架中将资源共享问题表述为离散随机优化问题,并开发了离散随机逼近算法来解决该问题。与穷举搜索相比,此类算法可以降低计算复杂度,同时实现令人满意的性能。静态无线信道和时变信道都被考虑。大量的仿真表明,用户可以从无线网络虚拟化和软件定义的D2D通信中受益,并且在实际的网络设置下,我们提出的方案可以在系统吞吐量和用户实用程序方面实现可观的性能提升。

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