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Wideband time-varying underwater acoustic channel emulator

机译:宽带时变水下声道仿真器

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Robust underwater acoustic (UWA) communication is still a big challenge due to physical properties of the sea-water. Underwater acoustic propagation characterized by high attenuation, time-varying multipath propagation, and low speed of sound. Recent advancement in the cooperative operation of Autonomous Underwater Vehicles (AUVs) and Underwater Sensor Network (UWSN) are limited by these factors. Necessities to develop more robust UWA communication is not negligible. Sea trial is an expensive operation. A prior simulation and optionally emulation are usually used to enhance mission success rate. UWA emulator is a replica of an underwater channel and may contain hardware-in-the-loop (HIL). This tool is a bridge between the gaps of the simulation and real hardware-software behavior. However, UWA channel emulator is still underdeveloped. This paper explains the framework and the development of UWA channel emulator for a wideband and time-varying channel. Implementation of the convolution process has successfully done by using reloadable coefficient Finite Impulse Response (FIR) filter. First path propagation delay has also successfully implemented using a circular buffer. Designed emulator is applicable for less than 10 nodes before processing time is getting too high.
机译:强大的水下声学(UWA)通信由于海水的物理性质,仍然是一个很大的挑战。下水声传播,其特征在于高衰减,时变多径传播和低声速。最近的自主水下车辆(AUV)和水下传感器网络(UWSN)的协同运作的进步受这些因素的限制。开发更强大的UWA沟通的必要性并不可忽略不可规集。海审讯是昂贵的操作。通常使用先前的模拟和可选的仿真来提高任务成功率。 UWA仿真器是水下通道的复制品,可以包含硬件循环(HIL)。该工具是模拟和真实硬件软件行为的差距之间的桥梁。但是,UWA通道仿真器仍未开发。本文介绍了宽带和时变通道的UWA通道仿真器的框架和开发。通过使用可重新加载的系数有限脉冲响应(FIR)滤波器成功完成卷积过程的实现。第一路径传播延迟也使用圆形缓冲区成功实现。在处理时间越来越高之前,设计的仿真器适用于少于10个节点。

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