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首页> 外文期刊>IEICE Transactions on Communications >A Near-Optimal Low-Complexity Transceiver for CP-Free Multi-Antenna OFDM Systems
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A Near-Optimal Low-Complexity Transceiver for CP-Free Multi-Antenna OFDM Systems

机译:适用于无CP多天线OFDM系统的近乎理想的低复杂度收发器

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摘要

Conventional orthogonal frequency division multiplexing (OFDM) system utilizes cyclic prefix (CP) to remove the channel-induced inter-symbol interference (ISI) at the cost of lower spectral efficiency. In this paper, a generalized sidelobe canceller (GSC) based equalizer for ISI suppression is proposed for uplink multi-antenna OFDM systems without CP. Based on the block representation of the CP-free OFDM system, there is a natural formulation of the ISI suppression problem under the GSC framework. By further exploiting the signal and ISI signature matrix structures, a computationally efficient partially adaptive (PA) implementation of the GSC-based equalizer is proposed for complexity reduction. The proposed scheme can be extended for the design of a pre-equalizer, which pre-suppresses the ISI and realizes CP-free downlink transmission to ease the computational burden of the mobile unit (MU). Simulation results show that the proposed GSC-based solutions yield equalization performances almost identical to that obtained by the conventional CP-based OFDM systems and are highly resistant to the increase in channel delay spread.
机译:传统的正交频分复用(OFDM)系统利用循环前缀(CP)来消除信道引起的符号间干扰(ISI),但代价是频谱效率较低。本文针对不带CP的上行多天线OFDM系统,提出了一种基于广义旁瓣抵消器(GSC)的ISI抑制均衡器。基于无CP OFDM系统的块表示,在GSC框架下自然形成了ISI抑制问题。通过进一步利用信号和ISI签名矩阵结构,提出了基于GSC的均衡器的计算有效的部分自适应(PA)实现,以降低复杂度。所提出的方案可以扩展到预均衡器的设计,该预均衡器可以预先抑制ISI并实现无CP的下行链路传输,从而减轻移动单元(MU)的计算负担。仿真结果表明,所提出的基于GSC的解决方案产生的均衡性能几乎与常规基于CP的OFDM系统所获得的均衡性能相同,并且对信道延迟扩展的增加具有很高的抵抗力。

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