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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Intelligent Energy and Traffic Coordination for Green Cellular Networks With Hybrid Energy Supply
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Intelligent Energy and Traffic Coordination for Green Cellular Networks With Hybrid Energy Supply

机译:具有混合能源供应的绿色蜂窝网络的智能能源和交通协调

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In energy-harvesting-enabled networks, the intermittent and randomly distributed renewable energy imposes severe challenges in reliably supplying the time-varying mobile traffic. To tackle this issue, we reshape the spatial renewable energy and mobile traffic by exploiting the approach of energy sharing and load shifting, with the objective of minimizing the grid energy expenditure of cellular networks powered by both grid and renewable energy. We formulate this problem as a mixed-integer nonlinear programming, which is proved to be NP-hard. For centralized networks, we first devise a cost-efficient centralized algorithm leveraging the univariate search technique, which can find the near-optimal solutions with the advantages of low complexity and fast convergence. Specifically, by jointly optimizing the spatial distribution of renewable energy and mobile traffic, the centralized algorithm achieves a good match between the renewable energy supply and the total energy demand at each base station (BS), such that the grid energy expenditure of the whole network is greatly reduced. For distributed networks, we further propose a three-phase distributed control policy in which BSs and mobile users adjust their strategies independently only with their local information. Finally, we present extensive simulations to investigate the convergence and effectiveness of our proposed algorithms and demonstrate the achieved energy conservation gain compared with the existing schemes.
机译:在启用能量收集的网络中,间歇性和随机分布的可再生能源在可靠地提供随时间变化的移动流量方面提出了严峻的挑战。为了解决这个问题,我们通过利用能量共享和负载转移的方法来重塑空间可再生能源和移动交通,以最小化由网格和可再生能源共同驱动的蜂窝网络的网格能源消耗。我们将此问题表述为混合整数非线性规划,证明它是NP难的。对于集中式网络,我们首先设计一种利用单变量搜索技术的经济高效的集中式算法,该算法可以找到具有低复杂度和快速收敛性的近乎最优的解决方案。具体地,通过共同优化可再生能源和移动交通的空间分布,集中式算法实现了可再生能源的供应与每个基站(BS)的总能源需求之间的良好匹配,从而使整个网络的网格能源支出大大减少了。对于分布式网络,我们进一步提出了一个三相分布式控制策略,其中BS和移动用户仅根据其本地信息独立调整其策略。最后,我们提供了广泛的仿真来研究我们提出的算法的收敛性和有效性,并证明了与现有方案相比所实现的节能效果。

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