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首页> 外文期刊>IEEE systems journal >Spectrum-Aware Routing in Full-Duplex Cognitive Radio Networks: An Optimization Framework
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Spectrum-Aware Routing in Full-Duplex Cognitive Radio Networks: An Optimization Framework

机译:全双工认知无线电网络中的频谱感知路由:一种优化框架

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Routing and channel assignment schemes for cognitive radio networks (CRNs) are often designed assuming the half-duplex (HD) transmission capability per user. However, recent advances in full-duplex (FD) communications and self-interference suppression techniques challenge the traditional HD transmission capability, in which FD communication can significantly improve spectrum utilization. In this work, we investigate the routing and channel assignment problem in FD-based CRNs. Two types of FD communications are considered. The first type only allows for simultaneous transmission and reception over different channels, while the second type allows for simultaneous transmission and reception over the same channel. Specifically, for a given cognitive radio (CR) source-destination pair, we first formulate the channel assignment problem for each path between the communicating pair as an optimization problem with the main objective of minimizing the number of distinct assigned channels for that path such that the number of simultaneous active hops across the path is maximized. We show that the optimization problem is a binary linear programming problem, which is, in general, non-deterministic polynomial time-hard. Thus, we present a near-optimal solution based on a sequential fixing procedure, where the binary variables are iteratively determined by solving a sequence of relaxed programs. Accordingly, we develop a novel routing scheme that selects the best path along with the channel assignment such that the highest capacity is achieved. Simulation results are provided, which show that a careful routing and channel assignment scheme for FD CRNs can significantly improve the network performance.
机译:通常假设每个用户的半双工(HD)传输能力来设计认知无线电网络(CRN)的路由和信道分配方案。但是,全双工(FD)通信和自干扰抑制技术的最新进展对传统的高清传输能力提出了挑战,传统的高清传输能力可以大大提高频谱利用率。在这项工作中,我们调查了基于FD的CRN中的路由和信道分配问题。考虑了两种类型的FD通信。第一种类型仅允许在不同信道上同时发送和接收,而第二种类型允许在同一信道上同时发送和接收。具体来说,对于给定的认知无线电(CR)源-目的地对,我们首先将通信对之间每个路径的信道分配问题表述为一个优化问题,其主要目的是使该路径的不同分配信道的数量最少,从而跨路径的同时活动跃点数已最大化。我们表明优化问题是一个二进制线性规划问题,通常来说,它是不确定的多项式时间难的。因此,我们提出了一种基于顺序固定过程的近乎最优的解决方案,其中二进制变量是通过求解一系列松弛程序来迭代确定的。因此,我们开发了一种新颖的路由方案,该方案选择最佳路径以及信道分配,以实现最大容量。仿真结果表明,针对FD CRN精心设计的路由和信道分配方案可以显着提高网络性能。

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