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OFDM Inter-Carrier Interference reduction using pulse shaping function for underwater acoustic communications systems

机译:用于水下声通信系统的使用脉冲整形功能的OFDM载波间干扰减少

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Due to multipath propagation and frequency selective fading, there are many obstacles for reliable and high data rate underwater acoustic (UWA) communication. The effective use of OFDM in underwater channel also suffers from its high sensitivity to carrier frequency offset, which distorts the orthogonality between subcarriers due to Inter-Carrier Interference (ICI). Bandwidth limited systems often employ pulse shaping techniques for the reduction of ICI, and minimize the likelihood of errors at the receiver. Such reduction can be achieved by minimizing the side lobes as much as possible. Since the side lobes contribute to the ICI power, which also results in the decrease of Signal to Interference Ratio (SIR). In this paper, the ICI and SIR performance under pulse shaping technique is studied for underwater acoustic channel. Performance comparison of OFDM Discrete Fourier Transform (DFT)-based pulses and Discrete Cosine Transform (DCT)-based pulses is conducted. Simulation results show that, the modified raised cosine pulse shape technique can achieve better performance of ICI power reduction, SIR and BER performances for underwater acoustic channel in comparison to several other commonly used pulses. The IDCT-OFDM is strongly resistant to inter-carrier interference in underwater acoustic channel. The resultant system can also demonstrate reasonably good bit error rate performance. A system scheme is then proposed based on the identified signal pulse.
机译:由于多径传播和频率选择性衰落,可靠和高数据速率水下声学(UWA)通信存在许多障碍。 OFDM在水下信道中的有效使用还受到其对载波频率偏移的高敏感性的影响,由于载波间干扰(ICI),该偏移会扭曲子载波之间的正交性。带宽受限的系统通常采用脉冲整形技术来降低ICI,并使接收器发生错误的可能性降至最低。这种减小可以通过尽可能地减小旁瓣来实现。由于旁瓣有助于ICI功率,这也导致信噪比(SIR)降低。本文研究了水下声信道在脉冲整形技术下的ICI和SIR性能。进行了基于OFDM离散傅立叶变换(DFT)的脉冲和基于离散余弦变换(DCT)的脉冲的性能比较。仿真结果表明,与其他几种常用脉冲相比,改进的升余弦脉冲整形技术可以实现更好的ICI功率降低性能,水下声信道的SIR和BER性能。 IDCT-OFDM对水下声信道中的载波间干扰具有很强的抵抗力。所得的系统还可以证明相当好的误码率性能。然后基于识别出的信号脉冲提出一种系统方案。

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