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A factor-graph based ZP-OFDM receiver for deep water acoustic channels

机译:用于深水声信道的基于因子图的ZP-OFDM接收机

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In this paper, we present a factor-graph based receiver for zero-padded orthogonal frequency division multiplexing (ZP-OFDM) transmissions over deep water channels with extremely long delay spreads. Due to the geometric structure of deep oceans, the channel delay spread between the direct paths and surface/bottom reflections can be on the order of hundreds of milliseconds, which is usually several times larger than the ZP-OFDM block duration, leading to severe inter-block-interference (IBI). Channel time variation also introduces inter-carrier-interference (ICI). The proposed receiver addresses both IBI and ICI in a unified factor-graph representation. Data detection is performed according to the Gaussian message passing (GMP) principle which operates on the factor graph in an iterative manner. The proposed structure is further extended to the progressive/iterative framework, while the channel estimation is updated in each iteration loop. Compared with a multiuser receiver, which views overlapped blocks as coming from different users, the proposed receiver enjoys better block-error-rate performance and appealing expansion capability when multiple receiving-elements are used. Both simulation and experimental results are provided to validate the performance of the proposed receiver.
机译:在本文中,我们提出了一种基于因子图的接收器,用于深水信道上的零填充正交频分复用(ZP-OFDM)传输,具有极长的延迟扩展。由于深海的几何结构,直接路径与表面/底部反射之间的信道延迟扩散可能约为数百毫秒,通常比ZP-OFDM块持续时间大几倍,从而导致严重的帧间干扰。块干扰(IBI)。信道时间变化还引入了载波间干扰(ICI)。提议的接收器以统一的因子图表示形式同时解决了IBI和ICI问题。数据检测是根据高斯消息传递(GMP)原理执行的,该原理以迭代方式对因子图进行操作。所提出的结构被进一步扩展到渐进/迭代框架,同时在每个迭代循环中更新信道估计。与将重叠块视为来自不同用户的多用户接收器相比,当使用多个接收元素时,建议的接收器具有更好的块错误率性能和吸引人的扩展能力。提供仿真和实验结果以验证所提出的接收器的性能。

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