On joint acoustic communication and positioning through MFSK-modulated signals and Costas arrays

S. Pennec, G. Touin, S. Azou, L. Collin
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引用次数: 4

Abstract

The underwater positioning applications with ultra-short base line (USBL) antenna have expanded significantly over last decades. Their principles are based on the geographical positioning of transponders emitting deterministic waveform such as Costas arrays from a receiving antenna composed of several acoustic transducers. Recovering from the transponder of external information such as immersion can increase accuracy of USBL positioning system. Jointly achieving a digital positioning and communication in a shallow water channel requires a careful design of the algorithms to get acceptable performance at limited complexity. This issue is investigated in the present paper. A processing chain design combining underwater acoustic communication and positioning through BFSK modulation of the data over Costas arrays is proposed, discussed and evaluated. Results show that the developed communication method is an efficient tradeoff between simultaneous transmission of telemetry data and positioning signal at a limited complexity. An experiment at sea will be conducted by IXSEA soon to confirm these first lab results.
基于mfsk调制信号和Costas阵列的联合声通信与定位研究
近几十年来,利用超短基线(USBL)天线的水下定位应用得到了显著扩展。它们的原理是基于发射器的地理定位,发射确定性波形,如由几个声学换能器组成的接收天线的科斯塔斯阵列。从应答器中恢复浸入等外部信息可以提高USBL定位系统的精度。在浅水信道中共同实现数字定位和通信需要仔细设计算法,以在有限的复杂性下获得可接受的性能。本文对这一问题进行了研究。提出了一种利用Costas阵列上的数据进行BFSK调制的水声通信与定位相结合的处理链设计,并进行了讨论和评估。结果表明,所开发的通信方法是在有限复杂性下遥测数据和定位信号同时传输之间的有效权衡。IXSEA将很快在海上进行一项实验,以确认这些最初的实验室结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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