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基于低功耗微控制器单元的全向水声微调制解调器的设计与实现。

Design and implementation of an omni-directional underwater acoustic micro-modem based on a low-power micro-controller unit.

机构信息

Digital Communications Laboratory, Electronic Engineering, Gangneung-Wonju National University, Gangneung, Gangwon 201-702, Korea.

出版信息

Sensors (Basel). 2012;12(2):2309-23. doi: 10.3390/s120202309. Epub 2012 Feb 20.

Abstract

For decades, underwater acoustic communication has been restricted to the point-to-point long distance applications such as deep sea probes and offshore oil fields. For this reason, previous acoustic modems were typically characterized by high data rates and long working ranges at the expense of large size and high power consumption. Recently, as the need for underwater wireless sensor networks (UWSNs) has increased, the research and development of compact and low-power consuming communication devices has become the focus. From the consideration that the requisites of acoustic modems for UWSNs are low power consumption, omni-directional beam pattern, low cost and so on, in this paper, we design and implement an omni-directional underwater acoustic micro-modem satisfying these requirements. In order to execute fast digital domain signal processing and support flexible interfaces with other peripherals, an ARM Cortex-M3 is embedded in the micro-modem. Also, for the realization of small and omni-directional properties, a spherical transducer having a resonant frequency of 70 kHz and a diameter of 34 mm is utilized for the implementation. Physical layer frame format and symbol structure for efficient packet-based underwater communication systems are also investigated. The developed acoustic micro-modem is verified analytically and experimentally in indoor and outdoor environments in terms of functionality and performance. Since the modem satisfies the requirements for use in UWSNs, it could be deployed in a wide range of applications requiring underwater acoustic communication.

摘要

几十年来,水下声通信一直局限于点对点的长距离应用,如深海探测和近海油田。出于这个原因,以前的声调制解调器通常具有高数据速率和长工作范围的特点,但其代价是尺寸大、功耗高。最近,随着对水下无线传感器网络(UWSN)的需求增加,紧凑、低功耗通信设备的研究和开发成为焦点。考虑到 UWSN 对声调制解调器的要求是低功耗、全向波束模式、低成本等,在本文中,我们设计并实现了一种满足这些要求的全向水下声微调制解调器。为了执行快速数字域信号处理并支持与其他外围设备的灵活接口,微调制解调器中嵌入了一个 ARM Cortex-M3。此外,为了实现小型和全向特性,使用直径为 34mm、谐振频率为 70kHz 的球形换能器来实现。还研究了基于数据包的高效水下通信系统的物理层帧格式和符号结构。所开发的水声微调制解调器在室内和室外环境中从功能和性能方面进行了分析和实验验证。由于调制解调器满足 UWSN 使用的要求,因此它可以部署在需要水下声通信的各种应用中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee5c/3304167/3d496962136c/sensors-12-02309f1.jpg

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