A fault injection platform for FPGA-based communication systems

Marcos T. Leipnitz, Geferson L. H. Júnior, G. Nazar
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引用次数: 3

Abstract

Field Programmable Gate Arrays (FPGAs) are successful platforms for the implementation of communication systems, due to their potential high throughput and low development costs. In such systems, however, investigating the system's resilience to soft errors is crucial in many scenarios, such as when facing stringent dependability constraints or when operating in radiation-harsh environments. Therefore, in this paper we present a fault injection platform that targets specifically FPGA-based communication systems. The platform operates partially on the device and partially on a host computer, aiming at both flexibility and high performance. A Reed-Solomon decoder is used as a case study to validate the platform, showing its ability to measure metrics that are relevant both for critical systems (e.g., fault sensitivity) as well as for communication systems in general (e.g., bit error rate).
基于fpga的通信系统故障注入平台
现场可编程门阵列(fpga)由于其潜在的高吞吐量和低开发成本,是实现通信系统的成功平台。然而,在这样的系统中,研究系统对软错误的弹性在许多情况下是至关重要的,例如当面临严格的可靠性限制或在辐射恶劣的环境中运行时。因此,在本文中,我们提出了一个专门针对基于fpga的通信系统的故障注入平台。该平台部分在设备上运行,部分在主机上运行,旨在实现灵活性和高性能。Reed-Solomon解码器被用作验证平台的案例研究,展示了其测量关键系统(例如,故障灵敏度)以及一般通信系统(例如,误码率)相关指标的能力。
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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