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Optimizing Energy Efficiency Over Energy-Harvesting LTE Cellular Networks

机译:通过能量收集LTE蜂窝网络优化能量效率

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We consider the problem of downlink scheduling in an LTE network powered by energy harvesting devices. We formulate optimization problems that seek to optimize popular energy efficiency metrics subject to mandatory LTE network constraints along with energy harvesting causality constraints. We identify a key sub-problem pertaining to maximizing the weighted sum rate that is common for all optimization problems that we consider, and is also of independent interest. We show that the latter sub-problem can be reformulated as a constrained submodular set function maximization problem which enables us to design a constant-factor approximation algorithm for maximizing the weighted sum rate. We leverage this algorithm to design approximation algorithms (with provable performance guarantees) for maximizing all considered energy efficiency metrics over an energy harvesting LTE downlink. Our proposed algorithms are simple to implement and offer superior performance.
机译:我们考虑由能量收集设备提供支持的LTE网络中的下行链路调度问题。我们制定了一些优化问题,这些问题旨在根据强制性LTE网络约束以及能量收集因果关系约束来优化流行的能效指标。我们确定了一个关键的子问题,该问题与最大化加权和比率有关,这对于我们考虑的所有优化问题都是常见的,并且也是独立关注的问题。我们表明,后者的子问题可以重新构造为约束子模块集函数最大化问题,这使我们能够设计一个恒定因子近似算法来最大化加权和率。我们利用此算法设计近似算法(具有可证明的性能保证),以在能量收集LTE下行链路上最大化所有考虑的能效指标。我们提出的算法易于实现,并具有出色的性能。

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