一种基于pc的现代侧扫声纳采集和显示系统

D. Clapp
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引用次数: 1

摘要

作为罗德岛大学海洋技术项目促进大学/行业合作的一部分,海洋工程研究生承担了一种廉价的数据收集和实时拼接系统的初步设计和实施,该系统用于双频侧扫声纳拖鱼。该设计的目标包括用集成到个人计算机中的接收器取代高成本的甲板单元和微型计算机采集系统,该接收器使用带有外部高压电源盒的单个印刷电路板。介绍了新系统的硬件特点。软件功能包括:(1)侧扫数据的实时滚动,(2)导航和控制数据的显示,(3)数据的实时底部检测和拼接,(4)数据记录。用于初始开发的硬件系统包括一台33mhz 386 PC/AT总线计算机,一台分辨率高达1024/spl倍/768/spl倍/256色的SVGA显卡和显示器,以及SCSI磁盘和磁带。一个16位AT原型板包含数据采集所需的所有数字和模拟组件。外部750伏电源提供系统兼容性与EG&G和克莱因拖鱼。数字化声纳回波通过4096字节的FIFO数据缓冲区和直接存储器访问(DMA)获得,数据速率为每秒40千字节。标准I/O端口寻址用于从控制旋钮和通信到板的输入。利用PC机软件和386计算机上的频谱TMS320C30 DSP卡,初步实现了显示器底部检测和拼接系统的原型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A modern PC-based sidescan sonar acquisition and display system
As part of a University of Rhode Island Ocean Technology program promoting university/industry cooperation, graduate students in ocean engineering undertook the preliminary design and implementation of an inexpensive data collection and real-time mosaicing system for use with dual frequency side-scan sonar tow fish. Objectives for the design included replacing high-cost deck units and mini-computer acquisition systems with a receiver integrated into a personal computer using a single printed circuit board with an external high voltage power supply box. Hardware features on the new system are described. Software features include: (1) real-time scrolling of side-scan data, (2) display of navigation and control data (3) real-time bottom detect and mosaicing of data, and (4) data logging. The hardware system used for initial development consists of a 33 MHz 386 PC/AT bus computer, a SVGA display card and monitor with resolution up to 1024/spl times/768/spl times/256 colors, and a SCSI disk and tape. A 16-bit AT prototype board contains all the necessary digital and analog components for data acquisition. An external 750 volt power supply provides system compatibility with EG&G and Klein tow fish. Digitized sonar returns are acquired via 4096 byte FIFO data buffers and Direct Memory Access (DMA) for data rates of 40 kilobytes per second. Standard I/O port addressing is used for input from control knobs and communications to the board. A preliminary bottom detect and mosaicing system for display has been prototyped using software in the PC and a Spectrum TMS320C30 DSP card in the 386 computer.<>
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