Energy-efficient power allocation algorithm for heterogeneous OFDM downlink systems

Kecheng Zhang, Jiamo Jiang, M. Peng, Lei Li
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引用次数: 4

Abstract

The energy-efficient design for heterogeneous OFDM downlink systems has attracted much attention since the problem of environmental pollution becomes dramatically serious. The core issue of the problem is power optimization. In this paper, the optimization problem is modeled as a multi-cell OFDM downlink heterogeneous system and the energy efficiency is calculated as the total throughput divided by the total power consumption. To solve the problem we first derive the relationship between the total power consumption and the system energy efficiency. Then the existence of the unique optimal value of the energy efficiency, which can be get by adjusting the transmit power, is proved. Thus, an improved water-filling algorithm is proposed to achieve the maximum energy efficiency of the system but the complexity is too high for the current system. Then we propose a distributed suboptimal algorithm to approach the optimal value. It adjusts the transmit power of each cell independently and finally converges by a certain number of iterations. Simulation results illustrate the features of the energy efficiency and show the proposed algorithm is feasible and effective.
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异构OFDM下行系统的节能功率分配算法
随着环境污染问题的日益严重,异构OFDM下行系统的节能设计备受关注。该问题的核心问题是功率优化。本文将优化问题建模为一个多小区OFDM下行异构系统,其能量效率计算为总吞吐量除以总功耗。为了解决这个问题,我们首先推导了总功耗与系统能效之间的关系。然后证明了通过调整发射功率可获得的唯一最优能效值的存在性。因此,提出了一种改进的充水算法,以实现系统的最大能源效率,但对于当前系统来说,该算法的复杂度太高。然后,我们提出了一种分布式次优算法来逼近最优值。它独立地调整每个小区的发射功率,经过一定次数的迭代最终收敛。仿真结果说明了该算法的节能特性,证明了该算法的可行性和有效性。
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