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Single stream phase pursuit during the channel presumption in the wireless MIMO communication system of super high throughput

机译:超高吞吐量无线MIMO通信系统中的信道推定中的单流相位追踪

摘要

In a multiple-input, multiple-output system, the wireless node's receive chain demodulation function is enhanced to include phase tracking. Instead of performing phase tracking during the data symbols which is cumbersome for very high throughput wireless networks, the VHT Long Training Fields (LTFs) embedded in the preamble of a frame are used for phase tracking. Single stream pilot tones are added during the transmission of VHT-LTFs. This is exploited on the receive side to be able to estimate the channel using the pilot tones in the first set of the Long Training Fields. Second set of the Long Training Fields are then used to estimate the phase of the pilot tones using the estimated channel. The phase estimation so obtained is continuously applied to other received data tones throughout the VHT-LTFs of the data symbols. The phase errors due to PLL mismatches and phase noise are reduced at reception, leading to better signal to noise ratio for different levels of parts per million drift and offset in frequency. Further, MIMO channel estimation is more accurate, which improves the overall wireless network when this accurate MIMO channel estimation data participates in calibration and handshake between wireless nodes.
机译:在多输入多输出系统中,无线节点的接收链解调功能得到增强,以包括相位跟踪。代替在非常高吞吐量的无线网络麻烦的数据符号期间执行相位跟踪,嵌入在帧的前同步码中的VHT长训练字段(LTF)用于相位跟踪。在VHT-LTF的传输过程中添加了单流导频音。在接收侧利用这一点,以便能够使用长训练场的第一组中的导频音来估计信道。然后,使用第二组长训练场,使用估计的信道来估计导频音的相位。如此获得的相位估计被连续地应用于数据符号的整个VHT-LTF中的其他接收到的数据音调。 PLL失配和相位噪声引起的相位误差在接收时得以降低,从而针对百万分之几的不同水平的漂移和频率偏移导致了更好的信噪比。此外,MIMO信道估计更加准确,当此准确的MIMO信道估计数据参与无线节点之间的校准和握手时,可改善整个无线网络。

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