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A computationally efficient Doppler compensation system for underwater acoustic communications

机译:用于水声通信的高效计算多普勒补偿系统

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摘要

A Doppler compensation system is presented which is suitable for high-data-rate acoustic communication between rapidly moving platforms such as autonomous underwater vehicles. The proposed approach provides a generic preprocessor to conventional adaptive receiver structures with only a marginal increase in computational load and hardware cost. The preprocessor employs a novel Doppler estimation technique and efficient sample rate conversion to remove Doppler shift induced by platform velocity and acceleration. Performance predicted by simulation is compared to that of sea trials of a prototype communication system in the North Sea. Successful communication is demonstrated at 16 kbit/s with a transmitting platform moving at up to /spl plusmn/2.6 m/s.
机译:提出了一种多普勒补偿系统,该系统适用于快速移动平台(例如,水下自动驾驶设备)之间的高数据速率声学通信。所提出的方法为常规自适应接收机结构提供了通用预处理器,而仅在计算负载和硬件成本上略有增加。该预处理器采用新颖的多普勒估计技术和有效的采样率转换,以消除平台速度和加速度引起的多普勒频移。将模拟预测的性能与北海原型通信系统的海上试验进行了比较。以16 kbit / s的传输速率和/ spl plusmn / 2.6 m / s的传输平台演示了成功的通信。

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