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异构分布式系统中用于加速三维电容层析成像图像重建的多GPU、多节点算法

Multi-GPU, Multi-Node Algorithms for Acceleration of Image Reconstruction in 3D Electrical Capacitance Tomography in Heterogeneous Distributed System.

作者信息

Majchrowicz Michał, Kapusta Paweł, Jackowska-Strumiłło Lidia, Banasiak Robert, Sankowski Dominik

机构信息

Institute of Applied Computer Science, Lodz University of Technology, Stefanowskiego 18/22, 90-537 Lodz, Poland.

出版信息

Sensors (Basel). 2020 Jan 10;20(2):391. doi: 10.3390/s20020391.

Abstract

Electrical capacitance tomography (ECT) is one of non-invasive visualization techniques which can be used for industrial process monitoring. However, acquiring images trough 3D ECT often requires performing time consuming complex computations on large size matrices. Therefore, a new parallel approach for 3D ECT image reconstruction is proposed, which is based on application of multi-GPU, multi-node algorithms in heterogeneous distributed system. This solution allows to speed up the required data processing. Distributed measurement system with a new framework for parallel computing and a special plugin dedicated to ECT are presented in the paper. Computing system architecture and its main features are described. Both data distribution as well as transmission between the computing nodes are discussed. System performance was measured using LBP and the Landweber's reconstruction algorithms which were implemented as a part of the ECT plugin. Application of the framework with a new network communication layer reduced data transfer times significantly and improved the overall system efficiency.

摘要

电容层析成像(ECT)是一种可用于工业过程监测的非侵入式可视化技术。然而,通过三维ECT获取图像通常需要对大型矩阵进行耗时的复杂计算。因此,提出了一种基于在异构分布式系统中应用多GPU、多节点算法的三维ECT图像重建新并行方法。该解决方案能够加快所需的数据处理速度。本文介绍了具有新并行计算框架和专门用于ECT的特殊插件的分布式测量系统。描述了计算系统架构及其主要特性。讨论了计算节点之间的数据分布和传输。使用作为ECT插件一部分实现的局部二值模式(LBP)和兰德韦伯重建算法来测量系统性能。具有新网络通信层的框架的应用显著减少了数据传输时间并提高了整体系统效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ff9/7013565/68102fd284d1/sensors-20-00391-g001.jpg

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