基于开源软硬件工具的低成本地震数据采集系统

Arvid Ramdeane, L. Lynch
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引用次数: 0

摘要

特立尼达和多巴哥的西印度群岛大学地震研究中心在东加勒比岛屿经营一个由50多个台站组成的地震和火山监测网络。这些台站组成了一个由各种仪器和通信系统组成的地震台网。在11年的时间里,该中心已经开始了一项升级和扩展现有网络的倡议,该网络结合了宽带和/或强运动传感器、高动态范围数字化仪和网络设备,通过高速数字数据传输介质将每个站连接到集中观测站。为了实现这种升级和扩展,中心开发了一个使用开源硬件和软件工具的地震数据采集系统原型。该原型机旨在使用现成的硬件组件和开源地震相关软件,在两个独立的模块中处理数据采集和数据处理,从而降低成本。原型机使用三通道加速度计传感器,可以将数据处理成标准的MiniSEED格式,以便于数据存档和地震数据分析。全球位置模块提供1毫秒内的网络时间协议时间同步,实现数据的精确时间戳。数据可以以20分钟的数据文件形式本地存储在原型上,或者通过使用虚拟专用网络功能通过互联网安全地传输到中心位置。原型是模块化设计,允许组件易于更换,系统软件可以远程更新,从而降低维护成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
LOW COST SEISMIC DATA ACQUISITION SYSTEM BASED ON OPEN SOURCE HARDWARE AND SOFTWARE TOOLS
The University of the West Indies Seismic Research Centre, Trinidad and Tobago, operates a network of over 50 stations for earthquake and volcanic monitoring in the Eastern Caribbean islands. These stations form a seismic network consisting of various types of instrumentation, and communication systems. Over a period of 11 years, the Centre has embarked on an initiative of upgrading and expanding the current network with combinations of broadband and/or strong motion sensors, high dynamic range digitizers and networking equipment to link each station to centralized observatories via high speed digital data transmission medium. To realize such an upgrade and expansion, the Centre has developed a seismic data acquisition system prototype built using open-source hardware and software tools. The prototype is intended to be low-cost using off the shelf hardware components and open-source seismic related software handling data acquisition and data processing in two separate modules. The prototype uses a three-channel accelerometer sensor and can process data into standard MiniSEED format for easy data archiving and seismic data analysis. A global position module provides network time protocol time synchronization within 1 millisecond for accurate timestamping of data. Data can be stored locally on the prototype in twenty-minute data files or securely transferred to a central location via internet with the use of virtual private network capabilities. The prototype is modular in design allowing for components to be replaced easily and the system software can be updated remotely thus reducing maintenance cost.
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