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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Joint Channel and Impulsive Noise Estimation in Underwater Acoustic OFDM Systems
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Joint Channel and Impulsive Noise Estimation in Underwater Acoustic OFDM Systems

机译:水下声OFDM系统中的联合信道和脉冲噪声估计

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摘要

Impulsive noise is one key factor that limits the performance of underwater acoustic (UA) communications. In this paper, two pilotsubcarrier based algorithms are proposed to improve the performance of channel estimation and impulsive noise mitigation for UA orthogonal frequency-division multiplexing (OFDM) systems. The first algorithm jointly estimates the channel and the impulsive noise based on the leastsquares principle. The second algorithm is developed with the aim to reduce the computational complexity, where the expectation-maximization principle is applied to estimate the channel and the impulsive noise iteratively. We compare the proposed algorithms by simulations and apply them to process the data collected during an experiment conducted in December 2015 in the estuary of the Swan River, Western Australia. The results show that both proposed algorithms have better performance than existing methods in mitigating impulsive noise in UA OFDM systems.
机译:脉冲噪声是限制水下声学(UA)通信性能的关键因素。本文提出了两种基于导频子载波的算法,以提高UA正交频分复用(OFDM)系统的信道估计性能和脉冲噪声抑制性能。第一种算法基于最小二乘原理共同估计信道和脉冲噪声。为了降低计算复杂度,开发了第二种算法,其中将期望最大化原理应用于迭代地估计信道和脉冲噪声。我们通过仿真比较提出的算法,并将其用于处理2015年12月在西澳大利亚州天鹅河河口进行的一项实验中收集的数据。结果表明,在UA OFDM系统中,两种算法都比现有方法具有更好的性能。

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