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首页> 外文期刊>International Journal of Embedded Systems >Dynamic reconfiguration for management of radiation-induced faults in FPGAs
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Dynamic reconfiguration for management of radiation-induced faults in FPGAs

机译:动态重新配置以管理FPGA中辐射引起的故障

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This paper describes novel methods of exploiting the partial, dynamic reconfiguration capabilities of Xilinx Virtex V1000 FPGAs to manage Single-Event Upset (SEU) faults owing to radiation in space environments. The on-orbit fault detection scheme uses radiation-hardened reconfiguration controllers to continuously monitor the configuration bitstreams of nine Virtex FPGAs and to correct errors by partial, dynamic reconfiguration of the FPGAs while they continue to execute. To study the SEU impact on our signal processing applications, we use a novel fault injection technique to corrupt configuration bits, thereby simulating SEU faults. By using dynamic reconfiguration, we can run the corrupted designs directly on the FPGA hardware, giving many orders of magnitude speed-up over purely software techniques. The fault injection method has been validated against proton beam testing, showing 97.6% agreement. Our work highlights the benefits of dynamic reconfiguration for space-based reconfigurable computing.
机译:本文介绍了利用Xilinx Virtex V1000 FPGA的部分动态重新配置功能来管理由于空间环境中的辐射引起的单事件翻转(SEU)故障的新颖方法。在轨故障检测方案使用经过辐射加固的重新配置控制器来连续监视9个Virtex FPGA的配置位流,并在FPGA继续执行时通过部分动态重新配置FPGA来纠正错误。为了研究SEU对我们的信号处理应用的影响,我们使用一种新颖的故障注入技术来破坏配置位,从而模拟SEU故障。通过使用动态重新配置,我们可以直接在FPGA硬件上运行损坏的设计,从而比纯软件技术提高了多个数量级。故障注入方法已经通过质子束测试验证,显示出97.6%的一致性。我们的工作强调了动态重新配置对基于空间的可重新配置计算的好处。

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