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On Optimizing Guard Interval Lengths for UWA-OFDM Communication Systems Using Geometry-Based Channel Modelling

机译:用基于几何的信道建模优化UWA-OFDM通信系统的保护间隔长度

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This paper proposes a method to optimize the guard interval length of underwater acoustic (UWA) Orthogonal Frequency Division Multiplexing (OFDM) systems by using the geometry-based UWA channel modelling. The guard interval lengths are determined in depending of the influences of UWA channel parameters on the system performance. Based on the geometry-based UWA channel simulator, a set of parameters including the numbers of scatterers, the transmission distances, and the depths of the transmitter and the receiver, are investigated for the guard interval length optimization. Using the numerical simulation results, we can determine the guard length not only to prevent the inter symbol interference (ISI), but also to minimize the power consumption and increase the spectral efficiency of UWA-OFDM systems for a given transmission scenario. The proposed scheme can be used as a practical guideline to determine appropriate guard lengths for the design of UWA-OFDM systems.
机译:本文提出了一种通过使用基于几何的UWA信道建模来优化水下声学(UWA)正交频分复用(OFDM)系统的保护间隔长度的方法。根据UWA信道参数对系统性能的影响,确定保护间隔长度。基于基于几何形状的UWA通道模拟器,针对保护间隔长度优化研究了一组包括散射器的数量,传输距离和发射器和接收器的深度的参数。使用数值模拟结果,我们可以确定保护长度不仅要防止符号帧间干扰(ISI),还可以最小化功耗并提高给定传输方案的UWA-OFDM系统的频谱效率。所提出的方案可用作实用的指导,以确定用于设计UWA-OFDM系统的适当保护长度。

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