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A configurable distributed high performance computing framework for satellite's TDI-CCD imaging simulation

机译:用于卫星TDI-CCD成像仿真的可配置分布式高性能计算框架

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摘要

This paper renders a configurable distributed high performance computing(HPC) framework for TDI-CCD imaging simulation. It uses strategy pattern to adapt multi-algorithms. Thus, this framework help to decrease the simulation time with low expense.rnImaging simulation for TDI-CCD mounted on satellite contains four processes: 1) atmosphere leads degradation, 2) optical system leads degradation, 3) electronic system of TDI-CCD leads degradation and re-sampling process, 4) data integration. Process 1) to 3) utilize diversity data-intensity algorithms such as FFT, convolution and LaGrange Interpol etc., which requires powerful CPU. Even uses Intel Xeon X5550 processor, regular series process method takes more than 30 hours for a simulation whose result image size is 1500 * 1462. With literature study, there isn't any mature distributing HPC framework in this field. Here we developed a distribute computing framework for TDI-CCD imaging simulation, which is based on WCF, uses Client/Server (C/S) layer and invokes the free CPU resources in LAN. The server pushes the process 1) to 3) tasks to those free computing capacity. Ultimately we rendered the HPC in low cost.rnIn the computing experiment with 4 symmetric nodes and 1 server , this framework reduced about 74% simulation time. Adding more asymmetric nodes to the computing network, the time decreased namely. In conclusion, this framework could provide unlimited computation capacity in condition that the network and task management server are affordable. And this is the brand new HPC solution for TDI-CCD imaging simulation and similar applications.
机译:本文为TDI-CCD成像仿真提供了一种可配置的分布式高性能计算(HPC)框架。它使用策略模式来适应多种算法。因此,该框架有助于以较低的成本减少仿真时间。rn安装在卫星上的TDI-CCD的成像仿真包含四个过程:1)大气引线退化,2)光学系统引线退化,3)TDI-CCD的电子系统退化以及重采样过程,4)数据整合。流程1)到3)利用分集数据强度算法,例如FFT,卷积和LaGrange Interpol等,这需要强大的CPU。即使使用Intel Xeon X5550处理器,常规的串行处理方法也要花费30多个小时来进行仿真,其结果图像尺寸为1500 *1462。通过文献研究,该领域没有成熟的分布式HPC框架。在这里,我们基于WCF开发了用于TDI-CCD成像仿真的分布式计算框架,该框架使用客户端/服务器(C / S)层并调用LAN中的免费CPU资源。服务器将过程1)到3)任务推送到那些免费的计算能力。最终,我们以低成本实现了HPC。在具有4个对称节点和1个服务器的计算实验中,该框架减少了大约74%的仿真时间。向计算网络中添加更多的非对称节点,即减少了时间。总之,在网络和任务管理服务器负担得起的情况下,该框架可以提供无限的计算能力。这是用于TDI-CCD成像仿真和类似应用的全新HPC解决方案。

著录项

  • 来源
    《Optoelectronic imaging and multimedia technology》|2010年|p.785007.1-785007.8|共8页
  • 会议地点 Beijing(CN)
  • 作者单位

    School of Optoelectronics, Beijing Institute of Technology, Beijing, China 100081 Key Laboratory of Photoelectronic Imaging Technology and System (Beijing Institute of Technology), Ministry of Education of China, Beijing, China 100081;

    School of Optoelectronics, Beijing Institute of Technology, Beijing, China 100081 Key Laboratory of Photoelectronic Imaging Technology and System (Beijing Institute of Technology), Ministry of Education of China, Beijing, China 100081;

    School of Optoelectronics, Beijing Institute of Technology, Beijing, China 100081 Key Laboratory of Photoelectronic Imaging Technology and System (Beijing Institute of Technology), Ministry of Education of China, Beijing, China 100081;

    School of Optoelectronics, Beijing Institute of Technology, Beijing, China 100081 Key Laboratory of Photoelectronic Imaging Technology and System (Beijing Institute of Technology), Ministry of Education of China, Beijing, China 100081;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 多媒体技术与多媒体计算机;光电子技术、激光技术;
  • 关键词

    distributed computing; high performance computing; imaging simulation; WCF;

    机译:分布式计算高性能计算;成像模拟世界足球联合会;

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