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Subcarrier Allocation and Precoder Design for Energy Efficient MIMO-OFDMA Downlink Systems

机译:节能型MIMO-OFDMA下行链路系统的子载波分配和预编码器设计

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摘要

This paper studies the subcarrier allocation and precoder design problem for downlink multiple-input-multiple-output-orthogonal frequency-division multiple access systems. The criterion is to maximize the energy efficiency (EE) of the system. We adopt the time-sharing concept to allocate each subcarrier to one user, which results in a criterion similar with that of rate maximization. However, this approach does not make it possible to solve the problem for any value of the transmit power. We found that there exist gaps along the direction of total transmit power when the user selection switches for each subcarrier, which leads to a discontinuous EE function, for which quasi-concavity has to be checked. We first show that the sufficient conditions obtained for the subcarrier allocation approach are the optimal ones among all possibilities with the same transmit power. Then, we show that the proposed subcarrier allocation results in a discontinuous and quasi-concave EE function. We also give an upper bound of the EE function when the proposed sufficient conditions are not met. Finally, we propose an algorithm to find the maximal EE and its performance is illustrated by means of numerical results.
机译:本文研究了下行多输入多输出正交频分多址系统的子载波分配和预编码器设计问题。标准是使系统的能源效率(EE)最大化。我们采用分时概念将每个子载波分配给一个用户,这导致了类似于速率最大化的准则。但是,这种方法无法解决任何发射功率值的问题。我们发现,当用户选择切换每个子载波时,沿着总发射功率的方向存在间隙,这导致不连续的EE功能,为此必须检查准凹度。我们首先表明,在相同的发射功率下,所有子载波分配方法获得的充分条件是最佳条件。然后,我们表明,所提出的子载波分配导致不连续且准凹的EE函数。当建议的充分条件不满足时,我们还给出了EE函数的上限。最后,我们提出了一种寻找最大EE的算法,并通过数值结果说明了其性能。

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