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Practical Implementation of Electrical Tomography in a Distributed System to Examine the Condition of Objects

机译:电层析成像在分布式系统中检查对象条件的实际实现

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This paper presents a nondestructive method to examine the condition of objects, such as brick wall, flood embankments, landfills, air brick, and similar constructions. We used a setup made of specially built a distributed system with measuring devices to determine the moisture level of flood embankments and to test brick walls. It is an innovative solution for the evaluation buildings and tanks, both in terms of the measuring method the reconstruction algorithm. The application of modern tomographic techniques in conjunction with topological algorithms allows us to perform a noninvasive and very accurate spatial assessment of the dampness level. Electrical tomography under various names includes many techniques for tomographic imaging of the electrical parameters of an object placed in an examination area. We propose a new hybrid solution utilizing imaging techniques together with surface electrodes. Although many methods of evaluating dampness and damage exist, there is no universal solution that is optimal under a wide range of measurement conditions. Our proposed solution achieves this using the topology method for optimization. The smart tomographic measurement systems used in our solution were developed by authors belonging to the Netrix Research and Development Laboratory. These systems included measuring devices, distributed systems, algorithms, and applications for image reconstruction. Several types of reconstruction algorithms and models are explored in this paper. The solution of this optimization problem is obtained by combining the finite element method and topological algorithms. Reconstruction of 2-D examples using numerical and experimental data is shown. The proposed tomographic system consists of a central processing unit, a set of sensors (devices) and a software solution that leverages cloud computing and a big data cluster for processing, visualizing, and analyzing data (a cyber-physical system).
机译:本文提出了一种非破坏性的方法来检查物体的状况,例如砖墙,防洪堤,垃圾填埋场,航空砖和类似建筑。我们使用由专门构建的带有测量设备的分布式系统制成的设备来确定洪水路堤的湿度并测试砖墙。对于评估建筑物和储罐而言,这是一种创新的解决方案,无论是在测量方法方面,还是在重建算法方面。现代层析成像技术与拓扑算法的结合使我们能够对湿度水平进行无创且非常准确的空间评估。具有各种名称的电子断层摄影包括用于对放置在检查区域中的对象的电参数进行断层摄影的许多技术。我们提出一种利用成像技术和表面电极的新型混合解决方案。尽管存在许多评估潮湿和损坏的方法,但没有通用的解决方案在广泛的测量条件下都是最佳的。我们提出的解决方案使用拓扑方法进行优化来实现此目的。我们解决方案中使用的智能断层测量系统是由Netrix研究与开发实验室的作者开发的。这些系统包括测量设​​备,分布式系统,算法和图像重建应用程序。本文探讨了几种类型的重建算法和模型。该优化问题的解决方案是通过有限元方法和拓扑算法相结合而获得的。显示了使用数值和实验数据重建二维示例的过程。拟议的断层扫描系统由一个中央处理单元,一组传感器(设备)和一个利用云计算的软件解决方案以及一个用于处理,可视化和分析数据的大数据集群(一个网络物理系统)组成。

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