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Optimal power and subcarriers allocation in downlink OFDMA system with imperfect channel knowledge

机译:具有不完善信道知识的下行OFDMA系统中的最优功率和子载波分配

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Most of existing work on resource allocation in TDMA and OFDMA systems assumes the availability of perfect channel state information (CSI) at the transmitter, which is rarely possible due to feedback delay and channel estimation error. In this paper, we study the effect of feedback delay and channel estimation error on margin adaptive resource allocation in a downlink OFDMA system. By using convex optimization framework, we find an optimal solution to the problem. First, we study the individual effect of feedback delay and channel estimation error on resource allocation by considering them exclusively. Then, we consider the simultaneous presence of feedback delay and channel estimation error and study their combined effect on resource allocation. We derive an explicit close form expression for the users' transmit power and propose an algorithm for power and subcarriers allocation for each of these three scenarios. The algorithms have polynomial complexities and solve the problem with zero optimality gaps. Simulation results show that the system performance is very sensitive to feedback delay and is affected significantly by imperfect channel estimation. Our proposed algorithms highly improve the system performance in the availability of only imperfect CSI at the transmitter.
机译:TDMA和OFDMA系统中有关资源分配的大多数现有工作都假设在发射机处具有完美的信道状态信息(CSI),由于反馈延迟和信道估计误差,这种情况很少发生。在本文中,我们研究了反馈延迟和信道估计误差对下行链路OFDMA系统中余量自适应资源分配的影响。通过使用凸优化框架,我们找到了该问题的最佳解决方案。首先,我们通过专门考虑它们来研究反馈延迟和信道估计误差对资源分配的个体影响。然后,我们考虑反馈延迟和信道估计误差的同时存在,并研究它们对资源分配的综合影响。我们为用户的发射功率导出了一个显式的近似形式表达式,并针对这三种情况中的每一种提出了一种功率和子载波分配算法。该算法具有多项式复杂度,并且可以以零最佳间隙解决问题。仿真结果表明,系统性能对反馈延迟非常敏感,并且信道估计不完善会严重影响系统性能。我们提出的算法在发射机中只有不完善的CSI的可用性方面可以极大地提高系统性能。

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