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一种用于水下声 OFDM 的多普勒补偿的时变滤波器。

A Time-Varying Filter for Doppler Compensation Applied to Underwater Acoustic OFDM.

机构信息

Department of Electrical and Computer Engineering, Dalhousie University, Halifax, NS B3H 4R2, Canada.

出版信息

Sensors (Basel). 2018 Dec 29;19(1):105. doi: 10.3390/s19010105.

Abstract

This paper describes a Doppler compensation algorithm to improve the reliability of orthogonal frequency division multiplexing (OFDM). To compensate for the time-varying Doppler effect in a mobile deployment scenario, first the time-scaling factor over a wideband channel is estimated using pilot tones inserted in each OFDM symbol. Then, using a time-varying resampling technique, the Doppler effect is compensated during the reception of each OFDM symbol in the frame. To predict the performance of the system in relatively shallow waters, a software channel model is developed that is able to simulate a wide variety of dynamic shallow water deployment scenario. The performance of the algorithm was tested for two extreme frequency ranges during sea trials, the first at 2 kHz for a long-range application, and the second at 125 kHz for a short range telemetry link. For the 2-kHz system, a 16-bps mobile link in which the platform was moving at 1 m/s was demonstrated to have a bit error rate on the order of 10 - 3 , while, for the 125-kHz telemetry application, a 2000-bps link was enabled with a bit error rate of 0.03 at a low SNR equal to 5.5 dB.

摘要

本文描述了一种多普勒补偿算法,用于提高正交频分复用(OFDM)的可靠性。为了补偿移动部署场景中的时变多普勒效应,首先使用插入每个 OFDM 符号中的导频来估计宽带信道的时间缩放因子。然后,使用时变重采样技术,在帧中接收每个 OFDM 符号时补偿多普勒效应。为了在相对较浅的水域中预测系统的性能,开发了一种软件信道模型,能够模拟各种动态浅水域部署场景。在海上试验中,对两种极端频率范围的算法性能进行了测试,第一种频率范围为 2 kHz,适用于远程应用,第二种频率范围为 125 kHz,适用于短程遥测链路。对于 2 kHz 系统,在移动速度为 1 m/s 的平台上演示了 16 bps 的移动链路,其误码率约为 10 - 3 ,而对于 125 kHz 遥测应用,在低 SNR 等于 5.5 dB 的情况下,启用了 2000 bps 的链路,误码率为 0.03。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45d6/6339152/268dc27abe89/sensors-19-00105-g001.jpg

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