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Joint Dynamic Spectrum Access and Multi-Relay Selection: A Matching-Theory-Based Approach

机译:联合动态频谱访问和多中继选择:一种基于匹配理论的方法

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In this paper, the problem of joint dynamic spectrum access and multi-relay selection is investigated in relayenabled cooperative communication systems to maximize the system sum-capacity. Since the considered problem is a mixed integer nonlinear program, which is generally intractable to find the optimal solution, two matching theory-based suboptimal algorithms are proposed to reduce the computational complexity for two different cases. For the case that each source node can only be assisted by one relay, a cyclic three-sided matching algorithm is firstly proposed to attain the stable matching results for the selection of the source node and the relay with the spectrum band used. Then, for the case that each source node can be assisted by more than one relay, a two-step matching algorithm is proposed to perform joint dynamic spectrum access and multi-relay selection. Simulation results show that the proposed algorithms, with much lower complexity compared to the optimal exhaustive search, can achieve the near-optimal performance with a gap to the optimum being less than 5%.
机译:本文研究了具有中继能力的协作通信系统中联合动态频谱访问和多中继选择的问题,以最大程度地提高系统的总容量。由于所考虑的问题是混合整数非线性程序,通常很难找到最佳解,因此,提出了两种基于匹配理论的次优算法,以减少两种情况下的计算复杂性。对于每个源节点只能由一个中继器辅助的情况,首先提出一种循环三边匹配算法,以获得稳定的匹配结果,以选择源节点和具有所使用频谱的中继器。然后,对于每个源节点可以由一个以上中继器辅助的情况,提出了一种两步匹配算法来进行联合动态频谱接入和多中继选择。仿真结果表明,与最优穷举搜索相比,该算法的复杂度要低得多,可以实现接近最优的性能,并且与最优的差距小于5%。

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