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首页> 外文期刊>Circuits and Systems II: Express Briefs, IEEE Transactions on >Architectures for MIMO-OFDM Systems in Frequency-Selective Mobile Fading Channels
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Architectures for MIMO-OFDM Systems in Frequency-Selective Mobile Fading Channels

机译:选频移动衰落信道中的MIMO-OFDM系统架构

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Orthogonal frequency-division multiplexing (OFDM) is used in third and fourth generation and is being planned for fifth-generation (5G) systems. OFDM requires that the received subcarriers be orthogonal. However, various factors, such as residual carrier frequency offset due to Doppler shift in mobile fading channels, can lead to a loss in orthogonality between subcarriers, which results in intersymbol interference (ISI), intercarrier interference (ICI), and bit error rate (BER) degradation. In developing the conjugate cancelation (CC) scheme for mitigating these ISI and ICI of OFDM systems, we integrate the CC scheme together with a space–time (ST) system and form an STCC multiple-input–multiple-output (MIMO) scheme. This STCC system improves the BER without expending power or bandwidth or complexity. Additionally, a Walsh–Hadamard (WH) transform is employed as a precoder for this STCC system and forms a novel WHSTCC scheme. It provides a low peak-to-average power ratio (PAPR) at the transmitter and a significant diversity gain at the receiver. Simulations indicate that both STCC and WHSTCC schemes outperform the regular CC and ST systems in mobile fading channels. Both schemes are simple and are backward compatible, and they can serve as the baseband building block for reconfigurable 5G multiuser MIMO systems.
机译:正交频分复用(OFDM)用于第三代和第四代,并且正计划用于第五代(5G)系统。 OFDM要求接收的子载波是正交的。但是,各种因素(例如由于移动衰落信道中的多普勒频移引起的残留载波频率偏移)可能导致子载波之间正交性的损失,从而导致符号间干扰(ISI),载波间干扰(ICI)和误码率( BER)退化。在开发共轭抵消(CC)方案以减轻OFDM系统的这些ISI和ICI时,我们将CC方案与空时(ST)系统集成在一起,形成了STCC多输入多输出(MIMO)方案。这种STCC系统在不增加功耗,带宽或复杂性的情况下提高了BER。此外,Walsh-Hadamard(WH)变换被用作该STCC系统的预编码器,并形成了一种新颖的WHSTCC方案。它在发射机处提供低的峰均功率比(PAPR),并在接收机处提供显着的分集增益。仿真表明,在移动衰落信道中,STCC和WHSTCC方案均优于常规CC和ST系统。两种方案都很简单并且向后兼容,它们可以用作可重配置5G多用户MIMO系统的基带构建块。

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