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ICI/ISI aware beamforming for MIMO-OFDM wireless system

机译:MIMO-OFDM无线系统的ICI / ISI感知波束成形

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An orthogonal frequency division multiplexing (OFDM) system suffers performance degradation when the length of the cyclic prefix (CP) is less than the channel impulse response. The root cause of this degradation is the inter-carrier interference (ICI) and inter-symbol interference (ISI) introduced by the excessive multipath delay. Generally, MIMO beamforming is helpful in mitigating such interference because it can spatially suppress some of the multipath. However, the effectiveness of this suppression is very limited. In this paper, we propose an ICI/ISI aware beamforming algorithm which explicitly takes into account the multipath characteristic of the channel. Optimal steering vectors are derived to maximize the signal-to-interference-plus-noise ratio (SINR). This technique not only achieves the beamforming benefit, but also significantly mitigates the ICI and ISI. We show, via simulations, that the proposed algorithm can dramatically reduce the block error rate, permitting good performance for channel delay profiles that would break conventional links. This is vitally important for the extension of indoor WLAN designs to outdoor uses.
机译:当循环前缀(CP)的长度小于信道脉冲响应时,正交频分复用(OFDM)系统的性能会下降。这种降级的根本原因是过多的多径延迟导致的载波间干扰(ICI)和符号间干扰(ISI)。通常,MIMO波束成形有助于减轻此类干扰,因为它可以在空间上抑制某些多径。但是,这种抑制的效果非常有限。在本文中,我们提出了一种ICI / ISI感知波束成形算法,该算法明确考虑了信道的多径特性。推导了最佳的引导向量,以最大程度地提高信噪比(SINR)。该技术不仅获得了波束成形的好处,而且显着减轻了ICI和ISI。通过仿真,我们证明了所提出的算法可以显着降低块错误率,从而为中断常规链路的信道延迟配置文件提供良好的性能。这对于将室内WLAN设计扩展到室外用途至关重要。

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