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Filter orthogonal frequency‐division multiplexing scheme based on polar code in underwater acoustic communication with non‐Gaussian distribution noise

机译:基于极码码的过滤器正交频分复用方案与非高斯分布噪声的水下声学通信

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The research domain of underwater communication has garnered much interest among researchers exploring underwater activities. The underwater environment differs from the terrestrial setting. Some of the main challenges in underwater communication are limited bandwidth, low data rate, propagation delay, and high bit error rate (BER). As such, this study assessed the underwater acoustic (UWA) aspect and explored the expression of error performance based ont ‐distribution noise. Filter orthogonal frequency‐division multiplexing refers to a new waveform candidate that has been adopted in UWA, along with turbo and polar codes. The empirical outcomes demonstrated that the noise did not adhere to Gaussian distribution, whereas the simulation results revealed that the filter applied in orthogonal frequency‐division multiplexing could significantly suppress out‐of‐band emission. Additionally, the performance of the turbo code was superior to that of the polar code by 2?dB at BER 10~(?3).
机译:水下沟通的研究领域已经在探索水下活动的研究人员中获得了很多兴趣。水下环境与地面设置不同。水下通信中的一些主要挑战是带宽的有限,数据速率,传播延迟和高位错误率(BER)。因此,本研究评估了水下声学(UWA)方面,并根据 T -Distribution噪声探索了误差性能的表达。滤波器正交频分复用是指在UWA采用的新波形候选,以及涡轮增压和极码。经验结果表明,噪声不粘附到高斯分布,而仿真结果表明,在正交频分复用中施加的过滤器可以显着抑制带外发射。另外,Turbo代码的性能优于极性代码的2°DB在BER 10〜(?3)。

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