This paper investigates the impacts of Inter-Channel Interference (ICI) effects on a shallow underwater acoustic (UWA) orthogonal frequency-division multiplexing (OFDM) communication system. Considering both the turbulence of the water surface and the roughness of the bottom, a stochastic geometry-based channel model utilized for a wide-band transmission scenario has been exploited to derive a simulation model. Since the system bandwidth and the sub-carrier spacing is very limited in the range of a few kHz, the channel capacity of a UWA system is severely suffered by the ICI effect. For further investigation, we construct the signal-to-noise-plus-interference ratio (SINR) based on the simulation model, then evaluate the channel capacity. Numerical results show that the various factors of a UWA-OFDM system as subcarriers, bandwidth, and OFDM symbols affect the channel capacity under the different Doppler frequencies. Those observations give hints to select the good parameters for UWA-OFDM systems.
翻译:本文调查了气相干涉(ICI)对浅水下声波(UWA)或地心频率分多氧化(OFDM)通信系统的影响。考虑到水表面的动荡和底部的粗糙度,为宽带传输设想而使用的基于随机几何的信道模型被用于模拟模型。由于系统带宽和子载波间距在几千赫的范围内非常有限,UWA系统的信道能力受到ICI效应的严重影响。为了进一步调查,我们根据模拟模型构建了信号到噪音加干扰比率(SINR),然后对频道能力进行评估。数字结果表明,UWA-OFDM系统作为子载波器、带宽和ODM符号的各种因素影响到多普勒频率下的频道能力。这些观察为UWA-OFDDM系统选择了良好的参数。