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Design and development of a Giga-bit Ethernet based high speed broadband data acquisition system for an underwater imaging array

机译:基于千兆位以太网的水下成像阵列高速宽带数据采集系统的设计与开发

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Ambient Noise Imaging (ANI) has been an active area of research at the Acoustic Research Laboratory (ARL). The ARL under Tropical Marine Science Institute (TMSI) of National University of Singapore (NUS) had designed an ambient noise imaging array in 2003 and tested them in the field. To cater for a high data-rate of 1.6 Gbps, Fibre Channel Arbitrated Loop technology was employed. Although this arrangement satisfied the data-rate requirement, the resulting complexity, size, and huge power requirements of the system along with a lack of reliability still needed to be addressed. The recent availability of relatively low cost, small form-factor, multi-channel off the shelf data acquisition cards and low power PC104+ embedded platforms along with Giga-bit Ethernet technology has been used to address the limitations of earlier system. The use of embedded Linux operating system has helped in improving the reliable operation of the system. In this paper we give a detailed account of the new hardware & software design and implementation followed a performance assessment of the system through evaluation in the field.
机译:环境噪声成像(ANI)一直是声学研究实验室(ARL)的活跃研究领域。新加坡国立大学(NUS)的热带海洋科学研究所(TMSI)下的ARL设计了2003年的环境噪声成像阵列,并在现场进行了测试。为了满足高数据速率为1.6 Gbps,采用光纤通道仲裁环路技术。虽然这种安排满足了数据速率要求,但仍然需要解决系统的复杂性,大小和巨大的功率要求以及缺乏可靠性。最近的成本相对较低,较小的形状,多声道关闭货架数据采集卡和低功耗PC104 +嵌入式平台以及GIGA位以太网技术已被用于解决早期系统的局限性。嵌入式Linux操作系统的使用有助于提高系统的可靠操作。在本文中,我们详细说明了新的硬件和软件设计和实现,然后通过该领域的评估进行了对系统的性能评估。

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    《OCEANS 2010》|2010年|P.1-7|共7页
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