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首页> 外文期刊>Oceanic Engineering, IEEE Journal of >Capacity of OFDM Systems Over Fading Underwater Acoustic Channels
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Capacity of OFDM Systems Over Fading Underwater Acoustic Channels

机译:衰落的水下声信道上的OFDM系统容量

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In this paper, we derive bounds to the channel capacity of orthogonal frequency division multiplexing (OFDM) systems over the underwater (UW) acoustic fading channel as a function of the distance between the transmitter and the receiver. The upper bound is obtained under perfect channel state information (CSI) at the receiver. The lower bound is obtained assuming the input is drawn from phase-shift keying (PSK) constellation which results in non-Gaussian distribution of the output signal and no CSI. The reduction from the upper bound is due to limited mutual information that can be conveyed by PSK constellation and the linear minimum mean square prediction error. Our UW channel deviates from the wide sense stationary and uncorrelated scattering (WSSUS) model commonly used for small bandwidths. We incorporate frequency-dependent path loss due to the acoustic propagation into each arrival path between the transmitter and the receiver. This leads the UW channel to be modeled as a frequency-dependent doubly spread fading channel characterized by the wide sense stationary and correlated scattering (WSS-non-US) fading assumption. Both Rayleigh and Ricean fading assumptions are investigated in our model. Results from the model show a gap between the upper and lower bounds which depends not only on the ranges and shape of the scattering function of the UW channel but also on the distance between the transmitter and the receiver. Our model for the scattering function was suggested by Rescheduled Acoustic Communications Experiment (RACE08) experimental data, leading to a multilag autoregressive (AR- $q$) model for the fading.
机译:在本文中,我们推导了水下(UW)声衰落信道上正交频分多路复用(OFDM)系统的信道容量的范围,该范围是发射机与接收机之间距离的函数。上限是在接收器的理想信道状态信息(CSI)下获得的。假设输入是从相移键控(PSK)星座中提取的,则获得下限,这会导致输出信号的非高斯分布而没有CSI。从上限减少是由于可以通过PSK星座图传达的有限互信息以及线性最小均方预测误差。我们的UW通道偏离了通常用于小带宽的广义静态和不相关散射(WSSUS)模型。我们将由于声传播而导致的与频率相关的路径损耗纳入发射机和接收机之间的每个到达路径中。这导致UW信道被建模为一个频率相关的双扩展衰落信道,其特征是广义固定和相关散射(WSS-non-US)衰落假设。我们的模型研究了瑞利衰落假设和莱斯衰落假设。模型的结果表明,上限和下限之间存在间隙,这不仅取决于UW通道的散射函数的范围和形状,还取决于发射器和接收器之间的距离。重新计划的声学通信实验(RACE08)实验数据建议了我们的散射函数模型,从而导致了衰落的多延迟自回归(AR-qq $)模型。

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