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The all-sky-6 and the Video Meteor Archive system of the AMS Ltd.

机译:ALS-6和AMS Ltd.的全天6和视频流星档案系统

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摘要

Over a period of several years, the American Meteor Society, Ltd. (AMS) has developed a custom hardware and software system for capturing, reducing, solving and permanently storing meteor event data along with all-important corroborating video media from which high accuracy and reliable information can be gleaned. The connected hardware and software developed for trajectory analysis up to this point has utilized mainly open source materials and steadily matured into a modern, online system with wide international connections through "live" internet interactions between the various camera stations. Some critical software components and algorithms used by our system for the astrometric calibration of the cameras as well as trajectory and orbit solving have been developed by Denis Vida and provided through his RMS (Raspberry Pi Meteor Station) and WMPL (Western Meteor Python Library) open-source projects. These routines and solvers are currently integrated into the AMS routine workflow along with some others from the open or published literature. A continuing check of our computational integrity during the rather difficult atmospheric trajectory stage is obtained by "back" solving those relatively rare concurrent events where there has been camera detection overlap with those objects formally published by other networks and available openly online. The trajectory part of the solution is the most difficult part of the process to automate and verify with a minimum of human intervention and so that part of the entire computational process is still in beta testing. On the other hand, the strongly autonimous computation of going from meteor trajectory to orbital elements through our version of WMPL has been tested against the listed online orbital elements derived with the same trajectory information (URL here) and is discussed in some detail statistically. We are continuing to search for instrumental causes and possible remediation of trajectory characterization faults and errors whether between stations or between individual cameras before we move our system out of the current beta testing phase.
机译:在几年内,美国流星会社有限公司(AMS)开发了一种自定义硬件和软件系统,用于捕获,减少,解决和永久地存储流星事件数据以及来自高精度的全部重要性视频媒体可以收集可靠的信息。为此点开发的轨迹分析开发的连接硬件和软件主要利用了开源材料,并通过各种相机站之间的“现场”互联网相互作用,稳步成熟到具有广泛国际联系的现代在线系统中。 Denis Vida开发了我们的系统用于Astomerric校准的一些关键软件和算法以及轨迹和轨道解决方案,并通过他的RMS(Raspberry Pi Meteor Station)和WMPL(Western Meteor Python Library)开放 - 弹力项目。这些例程和求解器目前融入了AMS常规工作流程以及来自开放或发布文献的其他人。在相当困难的大气轨迹阶段继续检查我们的计算完整性是通过“返回”解决相对罕见的并发事件,其中相对较少的并发事件与其他网络正式发布的那些对象并在线公开使用。解决方案的轨迹部分是自动化和验证的过程中最困难的部分,以最小的人为干预,因此整个计算过程的一部分仍处于测试版测试中。另一方面,通过我们的WMPL版本从流星轨迹到轨道元素的强烈自动计算已经针对派列的在线轨道元素(这里的URL)进行了测试,并且在统计上有一些细节讨论。我们正在继续寻找仪器的原因和可能的修复轨迹表征故障,并且在我们将系统移出当前的测试阶段之前,在移动系统之前是否会在各个相机之间进行错误。

著录项

  • 来源
    《Planetary and space science》 |2020年第10期|105005.1-105005.9|共9页
  • 作者单位

    Amer Meteor Soc Ltd Geneseo NY 14454 USA|Int Meteor Org Mechelen Belgium;

    Amer Meteor Soc Ltd Geneseo NY 14454 USA|Int Meteor Org Mechelen Belgium;

    Amer Meteor Soc Ltd Geneseo NY 14454 USA|SUNY Coll Geneseo Dept Phys & Astron Geneseo NY 14454 USA;

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