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Efficient Usage of Renewable Energy in Communication Systems Using Dynamic Spectrum Allocation and Collaborative Hybrid Powering

机译:使用动态频谱分配和协作混合供电的通信系统中可再生能源的有效利用

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In this paper, we introduce a new green resource allocation problem using hybrid powering of communication systems from renewable and nonrenewable sources. The objective is to efficiently allocate the power delivered from the different micro-grids to satisfy the network requirements. Minimizing a defined power cost function instead of the net power consumption aims to encourage the use of the available renewable power through collaboration between the base stations within and outside the different micro-grids. The different degrees of freedom in the system, ranging from assignment of users to base stations, possibility of switching the unnecessary base stations to the sleep mode, dynamic power allocation, and dynamic allocation of the available bandwidth, allow us to achieve important power cost savings. Since the formulated optimization problem is a mixed integer-real problem with a nonlinear objective function, we propose to solve the problem using the branch and bound (B&B) approach, which allows to obtain the optimal or a suboptimal solution with a known distance to the optimal. The relaxed problem is shown to be a convex optimization which allows to obtain the lower bound. For practical applications with large number of users, we propose a heuristic solution based on decomposing the problem into two subproblems. The users-to-base stations assignment is solved using an algorithm inspired from the approach while the bandwidth allocation is performed through the approach. Simulation results confirm the important savings in the nonrenewable power consumption when using the proposed approach and the efficiency of the proposed disjointed algorithms.
机译:在本文中,我们介绍了一个新的绿色资源分配问题,它使用了来自可再生和不可再生资源的通信系统的混合动力。目的是有效地分配从不同的微电网输送的功率,以满足网络需求。最小化定义的电源成本函数而不是净功耗的目的是通过不同微电网内外的基站之间的协作来鼓励使用可用的可再生能源。系统的不同自由度,从用户分配到基站,从不必要的基站切换到睡眠模式的可能性,动态功率分配以及可用带宽的动态分配,使我们能够节省大量的功率成本。由于公式化的优化问题是具有非线性目标函数的混合整数实数问题,因此我们建议使用分支定界(B&B)方法解决该问题,该方法允许获得距已知距离的最优或次优解。最佳。松弛问题显示为凸优化,它允许获得下界。对于具有大量用户的实际应用,我们提出了一种启发式解决方案,它基于将问题分解为两个子问题。使用从该方法启发而来的算法来解决用户到基站的分配,而通过该方法执行带宽分配。仿真结果证实了在使用所提出的方法时所节省的不可再生功耗以及所提出的分离算法的效率。

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