MIMO-OFDM零空间利用信道缩短预滤波器(NE-CSP)

Istdeo Singh, K. Giridhar
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引用次数: 8

摘要

在循环前缀(CP)长度固定的OFDM系统中,如果信道脉冲响应(CIR)大于循环前缀(CP)长度,则会产生块间干扰(IBI)和载波间干扰(inter carrier interference)。这个问题可以通过在接收机上设计一个时域滤波器来缓解,该滤波器可以缩短或塑造有效CIR,使其小于CP长度。本文提出了一种设计MIMO-OFDM系统信道缩短预滤波器(CSP)的新方法,该方法通过定义一个具有欠定方程集的测量模型。该模型适用于发射天线数(实际发射流数)小于接收天线数的情况。所提出的零空间开发CSP (NE-CSP)几乎完全消除了IBI和ICI,但在最简单的形式下,其多样性有所损失。通过使用NE-CSP结构中的多层(或过滤器),可以回收这种多样性。仿真结果表明,与现有的信道截断方法相比,NE-CSP不仅在计算上具有吸引力,而且在高信噪比下的误码率性能(BER)可以获得3dB ~ 5dB的增益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Null-space Exploiting channel shortening prefilter (NE-CSP) for MIMO-OFDM
In OFDM system, with fixed cyclic prefix (CP) length, inter block interference (IBI) and inter carrier interference will be present if the channel impulse response (CIR) is larger than the CP length. This problem can be mitigated by design a time domain filter at the receiver, which can shorten or shape the effective CIR to become less than the CP length. This paper proposes a novel method to design a channel shortening prefilter (CSP) for MIMO-OFDM systems, by defining a measurement model which has an underdetermined set of equations. This model is always applicable when the number of transmit antennas (actually transmit streams) is less than the number of receive antennas. The proposed Null-space Exploiting CSP (NE-CSP) removes the IBI and ICI nearly completely, but in the simplest form, has a loss in diversity. It is possible to reclaim this diversity by using the multiple layers (or filters) within the NE-CSP structure. Simulation results indicate that, compared to existing channel truncation methods, the NE-CSP is not only computationally attractive, but can also gives a gain of 3dB to 5dB in bit error rate performance (BER) performance at high SNRs.
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