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Signal processing for future MIMO-OFDM wireless communication systems

机译:用于未来mImO-OFDm无线通信系统的信号处理

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摘要

The combination of multiple-input multiple-output (MIMO) technology and orthogonal frequency division multiplexing (OFDM) is likely to provide the air-interface solution for future broadband wireless systems. A major challenge for MIMO-OFDM systems is the problem of multi-access interference (MAI) induced by the presence of multiple users transmitting over the same bandwidth. Novel signal processing techniques are therefore required to mitigate MAI and thereby increase link performance. A background review of space-time block codes (STBCs) to lever age diversity gain in MIMO systems is provided together with an introduction to OFDM. The link performance of an OFDM system is also shown to be sensitive to time-variation of the channel. Iterative minimum mean square error (MMSE) receivers are therefore proposed to overcome such time-variation. In the context of synchronous uplink transmission, a new two-step hard-decision interference cancellation receiver for STBC MIMO-OFDM is shown to have robust performance and relatively low complexity. Further improvement is obtained through employing error control coding methods and iterative algorithms. A soft output multiuser detector based on MMSE interference suppression and error correction coding at the first stage is shown by frame error rate simulations to provide significant performance improvement over the classical linear scheme. Finally, building on the "turbo principle", a low-complexity iterative interference cancellation and detection scheme is designed to provide a good compromise between the exponential computational complexity of the soft interference cancellation linear MMSE algorithm and the near-capacity performance of a scheme which uses iterative turbo processing for soft interference suppression in combination with multiuser detection.
机译:多输入多输出(MIMO)技术和正交频分复用(OFDM)的结合可能为未来的宽带无线系统提供空中接口解决方案。 MIMO-OFDM系统的主要挑战是由于存在多个在相同带宽上传输的用户而引起的多址干扰(MAI)问题。因此,需要新颖的信号处理技术来减轻MAI,从而提高链路性能。提供了空时分组码(STBC)的背景介绍,以利用MIMO系统中的年龄分集增益,并提供了OFDM简介。还显示了OFDM系统的链路性能对信道的时变敏感。因此,提出了迭代最小均方误差(MMSE)接收机来克服这种时变。在同步上行链路传输的背景下,新的STBC MIMO-OFDM的两步硬决策干扰消除接收器显示出具有鲁棒的性能和相对较低的复杂度。通过采用错误控制编码方法和迭代算法可以获得进一步的改进。帧误码率模拟显示了在第一阶段基于MMSE干扰抑制和纠错编码的软输出多用户检测器,与传统的线性方案相比,具有显着的性能改进。最后,基于“ turbo原理”,设计了一种低复杂度的迭代干扰消除和检测方案,以在软干扰消除线性MMSE算法的指数计算复杂度与该方案的近容量性能之间取得良好的折衷。与多用户检测结合使用迭代Turbo处理技术来抑制软干扰。

著录项

  • 作者

    Zhang Li;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
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