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Downlink Throughput Maximization for OFDMA Systems With Feedback Channel Capacity Constraints

机译:具有反馈信道容量约束的OFDMA系统的下行链路吞吐量最大化

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摘要

In this correspondence, we study the downlink throughput maximization for orthogonal frequency-division multiple-access (OFDMA) systems in the presence of feedback channel capacity constraints. We establish an information-theoretic lower bound on the capacity of feedback channel and build the corresponding test channel that achieves this lower bound. Based on the derived test channel, we formulate two optimization problems that maximize the downlink throughput with quantized channel state information (CSI): i) one problem where throughput is defined with the ergodic throughput and ii) the other problem with the outage throughput, from which we can see the performance limit for given limit feedback channels. We solve the throughput maximization problem through an iterative approach, which achieves the optimal ergodic throughput and the near-optimal outage throughput. Numerical results show that the downlink throughput with a limited feedback of CSI can be close to that with perfect CSI by exploiting correlation properties of downlink CSI for quantization.
机译:在这种对应关系中,我们研究存在反馈信道容量约束的正交频分多址(OFDMA)系统的下行链路吞吐量最大化。我们在反馈通道的容量上建立信息理论的下限,并构建实现此下限的相应测试通道。基于导出的测试信道,我们提出了两个优化问题,这些问题可以利用量化的信道状态信息(CSI)最大化下行链路吞吐量:i)一个问题,其中吞吐量是由遍历吞吐量定义的; ii)另一个问题是由中断吞吐量引起的,从我们可以看到给定的极限反馈通道的性能极限。我们通过迭代方法解决了吞吐量最大化问题,该迭代方法实现了最佳的遍历吞吐量和接近最佳的停机吞吐量。数值结果表明,通过利用下行CSI的相关特性进行量化,CSI反馈有限的下行吞吐量可以接近CSI完美的下行吞吐量。

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