FY4A閃電成像儀FPGA單粒子翻轉防護
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風云四號01批靜止氣象衛星地面應用系統工程項目資助


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

    FY4A衛星是我國首次星載閃電成像儀的靜止氣象衛星,其采用的可重載型FPGA芯片可連續在2 ms時間,按像元完成針對400×600像元的多幀閃電信號數據處理,實時生成閃電數據及地標觀測數據,并具有在軌軟件上注更新配置功能。由于近地空間環境復雜,因此FPGA屬于單粒子翻轉敏感器件,需要采用多種手段進行單粒子翻轉防護。在FY4地面應用系統工程建設中,根據FPGA單粒子翻轉對閃電探測產品所造成影響的不同,結合閃電事件數據邏輯關系、系統資源等情況,設計并在地面系統中部署了單粒子檢測程序,實現了FPGA單粒子翻轉異常自動辨識;根據閃電觀測任務特點、閃電探測產品恢復時效性要求,同時采取自動判別與自動發令、動態刷新與定時刷新、軟件復位與硬件復位等多種單粒子翻轉防護綜合措施,實現了FPGA單粒子翻轉自動恢復。通過以上工作,目前FY4A閃電成像儀已經有效地減少了單粒子翻轉效應對閃電探測產品的影響。

    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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康寧,郭彥,惠雯,何興偉,彭藝. FY4A閃電成像儀FPGA單粒子翻轉防護[J].氣象科技,2020,48(1):68~75

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歷史
  • 收稿日期:2018-02-28
  • 定稿日期:2019-09-24
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  • 在線發布日期: 2020-02-26
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