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An Adaptive Power and Bit Allocation Algorithm for MIMO OFDM/SDMA System Employing Zero-Forcing Multi-user Detection

机译:采用零强迫多用户检测的MIMO OFDM / SDMA系统自适应功率和比特分配算法

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摘要

The paper describes an adaptive algorithm for power and bit allocations in a multiple user Multiple Input Multiple Output Orthogonal Frequency Division Multiplexing (MIMO OFDM) system with Space Division Multiple Access, which operates in a frequency selective fading channel. The zero forcing (ZF) technique is applied to accomplish multi user detection (MUD). A Lagrange multiplier method is applied to obtain a one-step solution for optimal power and bit allocations in this system. The resulting algorithm is advantageous over an alternative Greedy algorithm, because it does not require a time-consuming iterative procedure for its implementation. The algorithm assigns bits and power for all users according to the channel state information (CSI), which is assumed to be fully or partially available to the transmitter. The simulation results show the proposed algorithm operates successfully in multiple user access scenarios.
机译:本文介绍了一种在空分多址信道中工作的,具有空分多址的多用户多输入多输出正交频分复用(MIMO OFDM)系统中功率和比特分配的自适应算法。迫零(ZF)技术应用于完成多用户检测(MUD)。应用Lagrange乘法器方法以获得该系统中最佳功率和位分配的一步式解决方案。所产生的算法优于替代的贪婪算法,因为它的实现不需要耗时的迭代过程。该算法根据信道状态信息(CSI)为所有用户分配比特和功率,假定信道状态信息对发射机完全或部分可用。仿真结果表明,该算法可以在多种用户访问场景下成功运行。

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