首页> 外文会议>International Conference on Communication Technology; 20061127-30; Guilin(CN) >Channel Equalization Using Passive Time Reversal Mirror in Underwater Acoustic Communication
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Channel Equalization Using Passive Time Reversal Mirror in Underwater Acoustic Communication

机译:水下声通信中使用无源时间倒转镜的信道均衡

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The shallow-water acoustic channel differs from radio channels in many aspects. Two fundamental mechanisms of multipath formation are reflection at the boundaries and ray bending, so the acoustic channels may have extremely long multipath spreads. In addition, the acoustic signals are subjected to temporal and spatial varying multipath channel, which may result in severe inter-symbol interference (ISI) for underwater acoustic communication. These characteristics restrict the range and bandwidth for reliable communications and lead a low data transfer rate. In order to mitigate the inter-symbol interference caused by multipath channel, single sensor passive time reversal mirror (PTRM) is introduced and applied to Pattern time delay shift coding scheme (PDS). Through the lake trial, the PTRM is shown to be a robust and effective approach for channel equalization in underwater acoustic communication.
机译:浅水声信道在许多方面与无线电信道不同。多径形成的两个基本机制是边界处的反射和射线弯曲,因此,声通道可能具有非常长的多径扩展。另外,声信号经受时空变化的多径信道,这可能导致用于水下声通信的严重的符号间干扰(ISI)。这些特性限制了可靠通信的范围和带宽,并导致较低的数据传输速率。为了减轻由多径信道引起的符号间干扰,引入了单传感器无源时间反转镜(PTRM)并将其应用于模式时延移位编码方案(PDS)。通过湖泊试验,显示了PTRM是一种在水下声通信中进行信道均衡的强大有效方法。

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