FY4A闪电成像仪FPGA单粒子翻转防护
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风云四号01批静止气象卫星地面应用系统工程项目资助


SingleEventUpset Protection on FPGA Loaded in Lightning Mapping Imager of FY4A Satellite
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    摘要:

    FY4A卫星是我国首次星载闪电成像仪的静止气象卫星,其采用的可重载型FPGA芯片可连续在2 ms时间,按像元完成针对400×600像元的多帧闪电信号数据处理,实时生成闪电数据及地标观测数据,并具有在轨软件上注更新配置功能。由于近地空间环境复杂,因此FPGA属于单粒子翻转敏感器件,需要采用多种手段进行单粒子翻转防护。在FY4地面应用系统工程建设中,根据FPGA单粒子翻转对闪电探测产品所造成影响的不同,结合闪电事件数据逻辑关系、系统资源等情况,设计并在地面系统中部署了单粒子检测程序,实现了FPGA单粒子翻转异常自动辨识;根据闪电观测任务特点、闪电探测产品恢复时效性要求,同时采取自动判别与自动发令、动态刷新与定时刷新、软件复位与硬件复位等多种单粒子翻转防护综合措施,实现了FPGA单粒子翻转自动恢复。通过以上工作,目前FY4A闪电成像仪已经有效地减少了单粒子翻转效应对闪电探测产品的影响。

    Abstract:

    FY4A is the first static meteorological satellite carrying a Lightning Mapping Imager (LMI), and the software implanted in the heavyloaded chips which can be renewed automatically by receiving the signals from the earth station in 2 ms, is able to complete the data processing for the multipleframe lightning signals in 400×600 pixel and generate the data in time, from lightning and ground marking objects. FY4A is a kind of SEU (Single Event Upset)sensitive device and needs to use numerous methods to make a SEU protection due to the complexity of the nearearth environment. In the construction project of the ground application system of Satellite FY4, in accordance with different effects of FPGA SEU on lightning detecting equipment, combined with data logical relationship amongst lightning affairs and systematic resources, we designed and arranged a singleevent (SE) testing program and achieved the FPGA (Field Programmable Gate Array) SEU abnormity automatic identification. Meanwhile, according to the characteristics of lightning observation and the efficient requirement of lightning detecting equipment, we use multiple comprehensive methods such as automatic judgment and order, dynamitic and timed refreshments, software and hardware recovery, etc., to secure an automatic recovery of FPGA SEU. Based on the above, the FY4A LMI has dramatically avoided the negative effect of SEU on lightning detecting equipment.

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康宁,郭彦,惠雯,何兴伟,彭艺. FY4A闪电成像仪FPGA单粒子翻转防护[J].气象科技,2020,48(1):68~75

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历史
  • 收稿日期:2018-02-28
  • 定稿日期:2019-09-24
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  • 在线发布日期: 2020-02-26
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