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Adaptive beamforming for interference rejection in an OFDM system

机译:OFDM系统中用于抑制干扰的自适应波束形成

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Orthogonal frequency-division multiplexing (OFDM) has been utilized in various communication systems because of its ability to compensate for multipath channels using simple low-complexity equalizers. However, the performance of OFDM systems can still be compromised due to adjacent channel and cochannel interference. In this paper, we investigate the performance of an adaptive beamforming algorithm for an OFDM system based on the constant modulus (CM) array. We consider this blind technique for a wireless local area network such as the IEEE 802.11a standard. The algorithm exploits the constant modulus property of the low-rate OFDM data carriers, and we show that it can also be used for the nonconstant modulus constellations at higher data rates. We consider the case where cochannel users become active part way into the transmitted packet such that new beamformer weights should be computed to null these interfering signals.
机译:正交频分复用(OFDM)已在各种通信系统中使用,因为它具有使用简单的低复杂度均衡器补偿多径信道的能力。但是,由于相邻信道和同信道干扰,OFDM系统的性能仍然会受到影响。在本文中,我们研究了基于恒定模量(CM)阵列的OFDM系统自适应波束成形算法的性能。我们考虑将这种盲目技术用于诸如IEEE 802.11a标准之类的无线局域网。该算法利用了低速率OFDM数据载波的恒定模量属性,并且我们证明了该算法还可以用于更高数据速率的非恒定模量星座。我们考虑了以下情况:同频道用户进入发送的数据包的途中变得活跃,因此应计算新的波束成形器权重以使这些干扰信号归零。

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