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Bit and Power Allocation for Multi-user MIMO OFDM Systems with Subcarrier Reuse

机译:具有副载波重用的多用户MIMO OFDM系统的比特和功率分配

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摘要

An adaptive resource allocation for multiaccess MIMO/OFDM systems was developed to enhance power efficiency by exploiting multiuser diversity, and channel variations in the time, frequency, and space domains [1]. However, by increasing the number of antennas, the scheme has a limitation in the affordable maximum data rate due to constraints on the maximum modulation order even without transmit power constraint. More antennas should allow more users to share the same subcarriers such that total affordable maximum data rates should increase accordingly. The paper presents an enhanced version of the scheme to remedy this problem. After the subcarrier assignment, the proposed scheme relaxes the maximum modulation order constraint in the bit loading process and presents an iterative bit swapping procedure, which are the two points deviated from the scheme in [1] and solve the related above-mentioned problem. A model of the multi-user channel on uplink with subcarrier reuse is considered. The proposed scheme aims to minimize the total user transmit power while satisfying the required data rates, the maximum transmit power constraint, and the bit error rate of each user. The proposed algorithm offers better performance than the high complexity greedy multi-user algorithm as illustrated in the simulation results. 0-35% improvement in terms of percentage in meeting the required data rates is observed from the simulation results and 0~5 dB transmit power gain is achieved.
机译:通过利用多用户分集以及时域,频域和空域中的信道变化[1],开发了一种用于多址MIMO / OFDM系统的自适应资源分配,以提高功率效率。然而,通过增加天线的数量,由于即使在没有发射功率约束的情况下对最大调制阶数的约束,该方案也在可承受的最大数据速率方面受到限制。更多的天线应允许更多的用户共享相同的子载波,以使总可承受的最大数据速率相应增加。本文介绍了该方案的增强版本,以解决此问题。子载波分配后,所提出的方案在比特加载过程中放宽了最大调制阶数约束,并提出了一个迭代的比特交换程序,这是与[1]中的方案不同的两点,并解决了上述相关问题。考虑具有子载波重用的上行链路上的多用户信道的模型。所提出的方案旨在在满足所需数据速率,最大发射功率约束以及每个用户的误码率的同时,使总用户​​发射功率最小。仿真结果表明,与高复杂度贪婪多用户算法相比,该算法具有更好的性能。从仿真结果可以看出,满足所需数据速率的百分比提高了0-35%,并且实现了0〜5 dB的发射功率增益。

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