首页> 外文会议>2017 International Conference on Industrial Engineering, Management Science and Application >Automatic Solar Radio Burst Type II and III Image Processing Tracking by Using CALLISTO System
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Automatic Solar Radio Burst Type II and III Image Processing Tracking by Using CALLISTO System

机译:利用CALLISTO系统自动跟踪II和III型太阳射电爆发

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摘要

Coronal Mass Ejections (CMEs) are well known as one of the most massive eruptions which potentially create major disturbances in theinterplanetary medium and initiate severe magnetic storms when they collide with the Earth's magnetosphere. As indicated with radio signatures so-called type II and III burst. It also divided by sub-type of burst depending on the physical characteristics and different mechanisms. For empirical case studies, the statistical properties of both solar bursts by using the Compound Astronomical Low-cost Low-frequency Instrument for Spectroscopy in Transportable Observatories (CALLISTO) network data has been analyzed. The aim of the present pa is to reveal dynamical properties of solar burst type II and III due to image processing. From the analysis of solar burst images, we used CALLISTO RAPP Java Viewer and Interactive Data Language (IDL) software to automatically detect flares and applied image segmentation techniques to compute their properties. The next plan is to discover the potential for dynamic optimization of an image processing of a solar burstwith a focus on optimization of power output under non-fault conditions. Finally, monitoring system design considerations such as the type and accuracy of measurements, sampling rate, and communication protocols are considered. The automatic procedure is a valuable tool for real-time monitoring of solar burst evolution.
机译:日冕物质抛射(CME)是最大规模的喷发之一,当它们与地球磁层碰撞时,可能会在行星际介质中造成重大干扰,并引发严重的磁暴。如无线电签名所示,所谓的II型和III型突发。它还根据物理特征和不同的机制按突发的子类型进行划分。对于经验案例研究,通过使用可移动天文台的复合天文学低成本低频光谱仪(CALLISTO)网络数据分析了两个太阳爆发的统计特性。本发明的目的是揭示由于图像处理引起的II和III型太阳爆发的动力学特性。通过对太阳爆发图像的分析,我们使用了CALLISTO RAPP Java Viewer和交互式数据语言(IDL)软件来自动检测耀斑,并应用了图像分割技术来计算其特性。下一个计划是发现动态优化太阳爆发图像处理的潜力,重点是在无故障条件下优化功率输出。最后,还要考虑监视系统设计方面的考虑因素,例如测量的类型和准确性,采样率以及通信协议。自动程序是实时监测太阳爆发的宝贵工具。

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