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FPGA Based Fault Detection, Isolation and Healing for Integrated Vehicle Health

机译:基于FPGA的故障检测,隔离和愈合,用于综合车辆健康

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Advances in VLSI technology have led to fabrication of chips with number of transistors projected to reach 10 billion in the near future. Affordable fault tolerant solutions transparent to applications with minimal hardware overhead in the micro architecture are necessary to mitigate component level errors for emerging system-on-chip (SoC) platforms. Ridgetop Group and the University of Arizona have developed innovative methods and systems for detection of anomalous conditions, that lead to faults in highly-complex electronic systems. Through built-in self-testing and fault detection, isolation and recovery capabilities we can offer 100% system availability and proactively avoid false or missed alarms, and estimate the remaining useful life of critical electronic components and their associated subsystems. A novel self-healing mechanism for SoC using field programmable gate array (FPGA) technology that localizes and isolates the faulty area and then replaces the functionality through partial configuration of the FPGA is introduced. Prognostic techniques are leveraged to address resource allocation and distribution to enable a more fault-tolerant, time efficient, and robust system. When prognostic detection methods are combined with reconfiguration strategies, system reliability and availability improve, reducing the probability of failure without compromise of either service quality or performance or requiring redundant components on the chip.
机译:VLSI技术的进步导致芯片的芯片制造,晶体管数量在不久的将来达到100亿。对于具有微架构中的硬件开销的最小硬件开销透明的经济实惠的容错解决方案是为了减轻芯片片(SOC)平台的组件级别误差是必要的。 Ridgetop集团和亚利桑那大学制定了用于检测异常情况的创新方法和系统,导致高度复杂的电子系统中的故障。通过内置自检和故障检测,隔离和恢复功能,我们可以提供100%的系统可用性,并积极避免虚假或错过的警报,并估计关键电子元件及其相关子系统的剩余使用寿命。使用现场可编程门阵列(FPGA)技术的SoC的新型自修复机制,其定位和隔离故障区域,然后通过介绍FPGA的部分配置来替换功能。可以利用预后技术来解决资源分配和分发,以实现更容错,时间高效和强大的系统。当预后检测方法与重新配置策略结合时,系统可靠性和可用性提高,降低了故障的概率,而不会妥协服务质量或性能或在芯片上需要冗余组件。

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