Detection and Isolation of permanent faults in FPGAs with remote access

F. Rittner, R. Glein, A. Heuberger
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Abstract

In this paper, we present a Fault Detection (FD) and Fault Isolation (FI) concept for permanent faults in SRAM-based FPGAs. Harsh environments, such as space, cause permanent faults, which results in defective hardware. Furthermore, physical inaccessible systems in such environments limit debugging capabilities. The proposed concept uses wireless remote debugging to access the remote device. The presumption of a permanent fault starts an extended hardware debugging procedure by performing off-line tests without user application. First, the FD process confirms the fault as permanent and reject temporary faults (known as static and transient). Afterwards, a fine-grain permanent FD and FI determines affected primitives in the FPGA and exclude this primitive from the FPGA design. This is realized with a customized recovery strategy for each primitive type, by blocking and bypassing these defective primitives. Focus of this paper is the feasibility of the concept.
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具有远程访问的fpga永久故障的检测与隔离
在本文中,我们提出了基于sram的fpga永久故障的故障检测(FD)和故障隔离(FI)概念。恶劣的环境(如太空)会导致永久性故障,从而导致硬件缺陷。此外,这种环境中的物理不可访问系统限制了调试功能。提出的概念是利用无线远程调试来访问远程设备。永久故障的假设通过在没有用户应用程序的情况下执行脱机测试来启动扩展的硬件调试过程。首先,FD流程确认故障为永久性故障,并拒绝临时故障(称为静态和瞬态)。然后,精细的永久FD和FI确定FPGA中受影响的原语,并将该原语从FPGA设计中排除。这是通过阻塞和绕过这些有缺陷的原语,为每个原语类型定制恢复策略来实现的。本文的重点是概念的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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