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A unified framework for optimal resource allocation in multiuser multicarrier wireless systems.

机译:在多用户多载波无线系统中优化资源分配的统一框架。

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摘要

Next-generation broadband wireless standards, e.g. IEEE 802.16e and Third Generation Partnership Project - Long Term Evolution (3GPP-LTE), use Orthogonal Frequency Division Multiple Access (OFDMA) as the preferred physical layer multiple access scheme, esp. for the downlink. Due to the limited resources available at the base station, e.g. bandwidth and power, intelligent allocation of these resources to the users is crucial for delivering the best possible quality of service (QoS) to the consumer with the least cost.; The problem of allocating time slots, subcarriers, rates, and power to the different users in an OFDMA system has been an area of active research in recent years. Previous research efforts in OFDMA resource allocation have typically focused on maximizing instantaneous performance, i.e. the allocation decisions are performed for the current time instant subject to the current resource constraints, which is unable to fully utilize the time-varying nature of the wireless channel to improve the communication performance of the system. This dissertation focuses instead on maximizing time-averaged rates, allowing us to exploit the temporal dimension to improve performance.; Furthermore, due to the difficult combinatorial nature of the problem, many researchers in the past have focused on developing sub-optimal heuristic algorithms. This dissertation proposes a unified algorithmic framework based on dual optimization techniques that have complexities that are linear in the number of subcarriers and users, and that achieve negligible optimality gaps in standards-based numerical simulations. Adaptive algorithms based on stochastic approximation techniques are also proposed, which are shown to achieve similar performance with even much lower complexity.; Finally, it was assumed in previous work that perfect channel state information (CSI) is available at the transmitter, which is quite unrealistic due to inevitable channel estimation errors and feedback delay. This dissertation develops algorithms assuming that only imperfect CSI is available, such that allocation decisions are made while explicitly considering the error statistics of the CSI.
机译:下一代宽带无线标准,例如IEEE 802.16e和第三代合作伙伴计划-长期演进(3GPP-LTE),使用正交频分多址(OFDMA)作为首选的物理层多址方案,尤其是。对于下行链路。由于基站可用的资源有限,例如带宽和功率,将这些资源智能地分配给用户,对于以最低的成本为消费者提供最佳的服务质量(QoS)至关重要。近年来,在OFDMA系统中向不同用户分配时隙,子载波,速率和功率的问题一直是积极研究的领域。 OFDMA资源分配的先前研究工作通常集中在最大化瞬时性能上,即在当前资源约束下针对当前时刻执行分配决策,这无法充分利用无线信道的时变特性来进行改进系统的通信性能。本文的重点是最大化时间平均速率,从而使我们能够利用时间维度来提高性能。此外,由于问题的难以组合的性质,过去许多研究人员都集中在开发次优启发式算法上。本文提出了一种基于双重优化技术的统一算法框架,该框架具有复杂的子载波和用户数量线性关系,并且在基于标准的数值模拟中可以忽略不计的最优缺口。还提出了基于随机逼近技术的自适应算法,该算法显示出相似的性能,并且复杂度更低。最后,在先前的工作中假设在发射机处可获得完美的信道状态信息(CSI),由于不可避免的信道估计误差和反馈延迟,这是非常不现实的。本文提出了假设只有不完善的CSI可用的算法,从而在明确考虑CSI的错误统计信息的同时做出分配决策。

著录项

  • 作者

    Wong, Ian Chan.;

  • 作者单位

    The University of Texas at Austin.$bElectrical and Computer Engineering.;

  • 授予单位 The University of Texas at Austin.$bElectrical and Computer Engineering.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 170 p.
  • 总页数 170
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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