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Delay-Optimal Power and Precoder Adaptation for Multi-Stream MIMO Systems

机译:多流MIMO系统的时延最优功率和预编码器自适应

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摘要

In this paper, we consider delay-optimal MIMO precoder and power allocation design for a MIMO link in wireless fading channels. There are L data streams spatially multiplexed onto the MIMO link with heterogeneous packet arrivals and delay requirements. The transmitter is assumed to have knowledge of the channel state information (CSI) as well as the joint queue state information (QSI) of the L buffers. Using L-dimensional Markov decision problem (MDP), we obtain optimal precoding and power allocation policies for general delay regime, which consists of an online solution and an offline solution. The online solution has negligible complexity but the offline solution has worst case complexity part((N + 1)L) where N is the buffer size. Using static sorting of the L eigenchannels, we decompose the MDP into L independent 1-dimensional subproblems and obtained low complexity offline solution with linear complexity order part(NL) and close-to-optimal performance.
机译:在本文中,我们考虑了无线衰落信道中MIMO链路的延迟最优MIMO预编码器和功率分配设计。有L个数据流在空间上复用到MIMO链路上,具有异构的数据包到达和延迟要求。假定发射机了解L个缓冲区的信道状态信息(CSI)以及联合队列状态信息(QSI)。利用L维马尔可夫决策问题(MDP),我们获得了通用时延方案的最优预编码和功率分配策略,该方案由在线解决方案和离线解决方案组成。联机解决方案的复杂度可以忽略不计,但脱机解决方案的最坏情况下的复杂度为((N + 1)L),其中N是缓冲区大小。使用L个特征信道的静态排序,我们将MDP分解为L个独立的一维子问题,并获得了线性复杂度阶数部分(NL)和接近最佳性能的低复杂度脱机解决方案。

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