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Channel estimation for wideband doubly selective UAS channels

机译:宽带双选UAS信道的信道估计

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Reliable high-speed wireless communication is essential for abundant new unmanned aircraft system's (UAS) applications. While orthogonal frequency division multiplexing (OFDM) has been widely used for wideband communications because of its efficiency and its robustness to multipath propagation, high Doppler shift of UAS channels makes the implementation of OFDM challenging for UAS applications. Doppler shift makes the communication channel to vary with time and therefore, destroys the orthogonality between the subcarriers in OFDM and results in inter carrier interference (ICI). To mitigate ICI, channel state information (CSI) is needed at the receiver. In numerous scenarios, UAS wideband wireless channel is sparse. Therefore, compressed sensing (CS) methods can be implemented for the channel estimation. In this paper, both the sparsity of the delay spread and Doppler shift of the UAS payload communication channel are considered for channel estimation and three major adjustments to a regular CS method are proposed in order to enhance the channel estimation performance for high Doppler shift scenarios of UAS. The proposed modifications take into account the precise frequency domain channel model, the Doppler shift statistics of UAS wireless channels, and the ICI effect of the data on the channel estimation precision. Simulation results indicate that the proposed modifications enhance the channel estimation accuracy considerably for high Doppler shift scenarios.
机译:可靠的高速无线通信对于大量新型无人机系统(UAS)应用至关重要。尽管正交频分复用(OFDM)的效率和对多径传播的鲁棒性已被广泛用于宽带通信,但UAS信道的高多普勒频移使OFDM的实现对UAS应用具有挑战性。多普勒频移使通信信道随时间变化,因此破坏了OFDM中子载波之间的正交性,并导致载波间干扰(ICI)。为了减轻ICI,在接收器处需要信道状态信息(CSI)。在许多情况下,UAS宽带无线信道都很稀疏。因此,可以为信道估计实现压缩感测(CS)方法。本文考虑了UAS有效载荷通信信道的时延扩展的稀疏性和多普勒频移两个方面来进行信道估计,并提出了对常规CS方法的三个主要调整,以增强针对高多普勒频移场景的信道估计性能。无人机系统。提出的修改考虑了精确的频域信道模型,UAS无线信道的多普勒频移统计以及数据的ICI对信道估计精度的影响。仿真结果表明,针对高多普勒频移场景,所提出的修改大大提高了信道估计的准确性。

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