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Tutorial T3: Error Resilient Real-Time Embedded Systems: Computing, Communications and Control

机译:教程T3:防错实时嵌入式系统:计算,通信和控制

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Real-time embedded systems encompassing computing, communications and control are pushed towards always operating close to their limits of performance under virtually all operating conditions, for reasons of maximizing throughput per watt or just throughput, making the hardware susceptible to transient errors and noise due to reduced operating margins. In addition, the effects of process variations, electrical degradation and thermal hot-spots introduce additional concerns compounding the overall error resilience problem. In this tutorial, we present key resilience issues with the digital and mixed-signal/RF processing, control and sensor subsystems of real-time embedded systems. First, failure mechanisms and associated fault models are discussed for both permanent failures as well as transient errors particularly in the light of the adaptive nature of such systems (vis.a. vis. low power operation). Next, off-line testing and diagnosis of digital, analog and mixed-signal/RF circuits and subsystems is discussed, covering both catastrophic defects as well as parametric failure conditions. Advanced methods for postmanufacture tuning of digital and analog/RF devices to maximize manufacturing yield and field reliability are presented. Issues related to testing and tuning of adaptive systems with analysis of test cases are also analyzed. Finally, we present on-line testing methods for robustness of the complete embedded system to transient errors and induced noise. Applications to linear as well as nonlinear control of such real-time systems are discussed. We use a robotic system with a video sensor to illustrate the core concepts.
机译:由于最大化每瓦吞吐量或仅吞吐量的原因,包括计算,通信和控制在内的实时嵌入式系统在几乎所有操作条件下都朝着始终接近其性能极限的方向运行,从而使硬件易受瞬态错误和噪声的影响。降低营业利润率。此外,工艺变化,电性能下降和热点的影响还带来了其他问题,使总体的故障恢复能力问题更加复杂。在本教程中,我们介绍了实时嵌入式系统的数字和混合信号/ RF处理,控制和传感器子系统的关键弹性问题。首先,针对永久性故障以及瞬态错误,特别是针对此类系统的适应性(相对于低功率运行),讨论了故障机制和相关的故障模型。接下来,讨论了数字,模拟和混合信号/ RF电路和子系统的离线测试和诊断,涵盖了灾难性缺陷以及参数性故障情况。提出了用于数字和模拟/ RF设备制造后调整的最大化方法,以最大程度地提高制造良率和现场可靠性。还分析了与测试案例分析相关的自适应系统的测试和调整问题。最后,我们介绍了用于完整嵌入式系统对瞬态误差和感应噪声的鲁棒性的在线测试方法。讨论了在此类实时系统的线性和非线性控制中的应用。我们使用带有视频传感器的机器人系统来说明核心概念。

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