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Fault injection as a test method for an FPGA in charge of data readout for a large tracking detector

机译:故障注入作为FPGA的测试方法,负责大型跟踪检测器的数据读取

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This paper describes how fault injection has been implemented as a test method for an FPGA in an existing hardware configuration setup. As this FPGA is in charge of data readout for a large tracking detector, the reliability of this FPGA is of high importance. Due to the complexity of the readout electronics, irradiation testing is technically difficult at this stage of the system commissioning. The work presented in this paper is therefore motivated by introducing fault injection as an alternative method to characterize failures caused by SEUs. It is a method to study the effect that a configuration upset may have on the operation of the FPGA. The target platform consists of two independent modules for data acquisition and detector control functionality. Fault injection to test the response of the data acquisition module is made possible by implementing the solution as part of the detector control functionality. Correct implementation is validated by a simple shift register design. Our results demonstrate that fault injection can assist in measuring the effect of an implemented mitigation technique in the final design of the FPGA.
机译:本文介绍了如何在现有的硬件配置设置中将故障注入实现为FPGA的测试方法。由于该FPGA负责大型跟踪检测器的数据读取,因此该FPGA的可靠性至关重要。由于读出电子设备的复杂性,在系统调试的此阶段,辐照测试在技术上是困难的。因此,本文介绍的工作是通过引入故障注入作为表征SEU引起的故障的另一种方法来进行的。这是一种研究配置混乱可能对FPGA的操作产生影响的方法。目标平台包括两个独立的模块,用于数据采集和检测器控制功能。通过将解决方案实现为检测器控制功能的一部分,可以进行故障注入以测试数据采集模块的响应。通过简单的移位寄存器设计可以验证正确的实现。我们的结果表明,故障注入可以帮助在FPGA的最终设计中评估已实施的缓解技术的效果。

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