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Channel modeling and resource allocation in OFDM systems.

机译:OFDM系统中的信道建模和资源分配。

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摘要

The increasing demand for high data rate in wireless communication systems gives rise to broadband communication systems. The radio channel is plagued by multipath propagation, which causes frequency-selective fading in broadband signals. Orthogonal Frequency-Division Multiplexing (OFDM) is a modulation scheme specifically designed to facilitate high-speed data transmission over frequency-selective fading channels.; The problem of channel modeling in the frequency domain is first investigated for the wideband and ultra wideband wireless channels. The channel is converted into an equivalent discrete channel by uniformly sampling the continuous channel frequency response (CFR), which results in a discrete CFR. A necessary and sufficient condition is established for the existence of parametric models for the discrete CFR. Based on this condition, we provide a justification for the effectiveness of previously reported autoregressive (AR) models in the frequency domain of wideband and ultra wideband channels.; Resource allocation based on channel state information (CSI) is known to be a very powerful method for improving the spectral efficiency of OFDM systems. Bit and power allocation algorithms have been discussed for both static channels, where perfect knowledge of CSI is assumed, and time-varying channels, where the knowledge of CSI is imperfect. In case of static channels, the optimal resource allocation for multiuser OFDM systems has been investigated. Novel algorithms are proposed for subcarrier allocation and bit-power allocation with considerably lower complexity than other schemes in the literature. For time-varying channel, the error in CSI due to channel variation is recognized as the main obstacle for achieving the full potential of resource allocation. Channel prediction is proposed to suppress errors in the CSI and new bit and power allocation schemes incorporating imperfect CSI are presented and their performance is evaluated through simulations.; Finally, a maximum likelihood (ML) receiver for Multiband Keying (MBK) signals is discussed, where MBK is a modulation scheme proposed for ultra wideband systems (UWB). The receiver structure and the associated ML decision rule is derived through analysis. A suboptimal algorithm based on a depth-first tree search is introduced to significantly reduce the computational complexity of the receiver.
机译:在无线通信系统中对高数据速率的不断增长的需求产生了宽带通信系统。无线电信道受到多径传播的困扰,这会导致宽带信号中的频率选择衰落。正交频分复用(OFDM)是一种调制方案,专门设计用于促进在选频衰落信道上的高速数据传输。首先研究宽带和超宽带无线信道在频域中的信道建模问题。通过对连续通道频率响应(CFR)均匀采样,可将通道转换为等效的离散通道,从而得到离散的CFR。为离散CFR的参数模型的存在建立了充要条件。根据这种情况,我们为先前报道的自回归(AR)模型在宽带和超宽带信道的频域中的有效性提供了依据。已知基于信道状态信息(CSI)的资源分配是提高OFDM系统频谱效率的一种非常有效的方法。对于静态信道和时变信道,都讨论了比特和功率分配算法,其中静态信道假定了CSI的全部知识,而时变信道假定了CSI的知识不完善。在静态信道的情况下,已经研究了用于多用户OFDM系统的最优资源分配。提出了用于子载波分配和比特功率分配的新颖算法,其复杂度比文献中的其他方案低得多。对于时变信道,由于信道变化而导致的CSI错误被认为是实现全部资源分配潜力的主要障碍。提出了信道预测以抑制CSI中的错误,并提出了包含不完善CSI的新比特和功率分配方案,并通过仿真评估了它们的性能。最后,讨论了用于多频带键控(MBK)信号的最大似然(ML)接收机,其中MBK是为超宽带系统(UWB)提出的调制方案。接收器结构和相关的ML决策规则是通过分析得出的。引入了基于深度优先树搜索的次优算法,以显着降低接收器的计算复杂度。

著录项

  • 作者

    Gao, Xiang.;

  • 作者单位

    Louisiana State University and Agricultural & Mechanical College.;

  • 授予单位 Louisiana State University and Agricultural & Mechanical College.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 95 p.
  • 总页数 95
  • 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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