论文标题
具有异质能量协调的智能电网动力蜂窝网络中的跨层调度和波束成形
Cross-Layer Scheduling and Beamforming in Smart-Grid Powered Cellular Networks With Heterogeneous Energy Coordination
论文作者
论文摘要
用户的调度,波束形成和能源协调在智能电网动力的蜂窝网络(SGPCN)中进行了研究,在该网络中,基站由智能网格和自然可再生能源提供动力。 SGPCN中考虑了异质能量协调,即能量商品与智能电网和基础站之间的能源交换。 SGPCN制定了长期的网格能量支出最小化问题,其比例比例约束。由于用户调度与波束成形向量相结合,因此配制的问题是通过标准凸优化方法来处理的具有挑战性。实际上,需要根据频道变化在每个插槽上更新光束成形的向量。用户调度需要在几个插槽(帧)上进行更新,因为用户设备的频繁调度可能会导致可靠性问题。因此,Lyapunov优化方法用于解除问题。提出了一种实用的两尺度算法,以在每个框架上安排用户,并在每个插槽处获得波束成形的向量和交换自然可再生能源的数量。我们证明所提出的两尺度算法可以通过调整控制参数渐近地实现最佳解决方案。数值结果验证了所提出的两尺度算法的性能。
User scheduling, beamforming and energy coordination are investigated in smart-grid powered cellular networks (SGPCNs), where the base stations are powered by a smart grid and natural renewable energy sources. Heterogeneous energy coordination is considered in SGPCNs, namely energy merchandizing with the smart grid and energy exchanging among the base stations. A long-term grid-energy expenditure minimization problem with proportional-rate constraints is formulated for SGPCNs. Since user scheduling is coupled with the beamforming vectors, the formulated problem is challenging to handle via standard convex optimization methods. In practice, the beamforming vectors need to be updated over each slot according to the channel variations. User scheduling needs to be updated over several slots (frame) since the frequent scheduling of user equipment can cause reliability issues. Therefore, the Lyapunov optimization method is used to decouple the problem. A practical two-scale algorithm is proposed to schedule users at each frame, and obtain the beamforming vectors and amount of exchanged natural renewable energy at each slot. We prove that the proposed two-scale algorithm can asymptotically achieve the optimal solutions via tuning a control parameter. Numerical results verify the performance of the proposed two-scale algorithm.