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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Resource Allocation for Energy Harvesting-Powered D2D Communication Underlaying Cellular Networks
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Resource Allocation for Energy Harvesting-Powered D2D Communication Underlaying Cellular Networks

机译:能量收集驱动的蜂窝网络下的D2D通信的资源分配

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Energy harvesting (EH)-powered wireless communications have attracted great attention from both industry and academia. However, the available energy, which relies on EH efficiency, will become another nonnegligible factor when we do research on EH-powered wireless communications. This paper studies the resource allocation problems in terms of spectrum and energy under EH-powered Device-to-Device (D2D) Communication underlaying Cellular Network (EH-DCCN). In this network, D2D pairs powered by EH are allowed to reuse the spectrum resources occupied by Cellular Users (CUs). To investigate the resource allocation problems, a sum-rate maximization problem of the whole cellular network with consideration of Quality of Service (QoS) and available energy constraints is formulated. The maximization problem is a nonconcave mixed-integer nonlinear programming (MINLP) problem, which has been proved to be NP-hard. To solve the problem, we first relax it with a concave lower bound on the original problem and then obtain the theoretical performance of the lower bound by Outer Approximation Algorithm. Moreover, a heuristic algorithm, an Energy-aware Space Matching approach (ESM), is proposed to acquire a suboptimal solution with low computational complexity. Finally, numerical simulation results indicate our considered resource allocation strategy is more effective than the strategy only based on channel state information under the EH-DCCN. Moreover, the performance in aspects of the sum rate and the matching probability shows that the ESM can approximately obtain the theoretical performance of the lower bound on the original problem under the scenarios with higher ratio of CU and EH-powered D2D numbers.
机译:基于能量收集(EH)的无线通信吸引了业界和学术界的极大关注。但是,当我们进行以EH为动力的无线通信研究时,依赖EH效率的可用能量将成为另一个不可忽略的因素。本文研究了基于EH的设备到设备(D2D)通信基础蜂窝网络(EH-DCCN)下的频谱和能量方面的资源分配问题。在该网络中,允许由EH提供支持的D2D对重用蜂窝用户(CU)占用的频谱资源。为了研究资源分配问题,提出了考虑服务质量(QoS)和可用能量约束的整个蜂窝网络的总速率最大化问题。最大化问题是一个非凹混合整数非线性规划(MINLP)问题,已被证明是NP难的。为了解决该问题,我们首先在原始问题上使用下凹的下界对其进行松弛,然后通过外部近似算法获得下界的理论性能。此外,提出了一种启发式算法,即能量感知空间匹配方法(ESM),以获取具有较低计算复杂度的次优解决方案。最后,数值模拟结果表明,我们考虑的资源分配策略比仅基于EH-DCCN的信道状态信息的策略更有效。此外,在求和率和匹配概率方面的性能表明,在CU和EH供电的D2D数量比率较高的情况下,ESM可以近似获得原始问题下界的理论性能。

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