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首页> 外文期刊>Geoscientific Instrumentation, Methods and Data Systems Discussions >A remote-control datalogger for large-scale resistivity surveys and robust processing of its signals using a software lock-in approach
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A remote-control datalogger for large-scale resistivity surveys and robust processing of its signals using a software lock-in approach

机译:用于大规模电阻率调查的远程控制数据记录器和使用软件锁定方法对其信号的强大处理

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We present a new versatile datalogger that can be used for a wide range of possible applications in geosciences. It is adjustable in signal strength and sampling frequency, battery saving and can remotely be controlled over a Global System for Mobile Communication (GSM) connection so that it saves running costs, particularly in monitoring experiments. The internet connection allows for checking functionality, controlling schedules and optimizing pre-amplification. We mainly use it for large-scale electrical resistivity tomography (ERT), where it independently registers voltage time series on three channels, while a square-wave current is injected. For the analysis of this time series we present a new approach that is based on the lock-in (LI) method, mainly known from electronic circuits. The method searches the working point (phase) using three different functions based on a mask signal, and determines the amplitude using a direct current (DC) correlation function. We use synthetic data with different types of noise to compare the new method with existing approaches, i.e. selective stacking and a modified fast Fourier transformation (FFT)-based approach that assumes a 1∕f?noise characteristics. All methods give comparable results, but the LI is better than the well-established stacking method. The FFT approach can be even better but only if the noise strictly follows the assumed characteristics. If overshoots are present in the data, which is typical in the field, FFT performs worse even with good data, which is why we conclude that the new LI approach is the most robust solution. This is also proved by a field data set from a long 2-D ERT profile.
机译:我们提供了一种新的多功能数据记录,可用于Geosciences中的各种可能的应用程序。它可调节信号强度和采样频率,电池节省,可以通过全局系统远程控制移动通信(GSM)连接,使其节省运行成本,特别是在监测实验中。 Internet连接允许检查功能,控制时间表和优化预放大。我们主要用它用于大型电阻率断层扫描(ERT),在那里它在三个通道上独立地登记电压时间序列,而注入方波电流。对于对该时间序列的分析,我们提出了一种基于锁定(LI)方法的新方法,该方法主要从电子电路中公知。该方法使用基于掩模信号的三个不同功能搜索工作点(阶段),并使用直流(DC)相关函数来确定幅度。我们使用具有不同类型噪声的合成数据来比较具有现有方法的新方法,即选择性堆叠和被修改的快速傅立叶变换(FFT),基于一个噪声特性。所有方法都提供了可比的结果,但Li比建立良好的堆叠方法更好。 FFT方法可以更好,但仅当噪声严格遵循假定的特征时。如果在现场典型的数据中存在过冲,则FFT即使具有良好的数据,即使我们得出结论是新的LI方法是最强大的解决方案。这也由来自长2-D ert谱的现场数据集。

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