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Effect of Soft Errors in Iterative Learning Control and Compensation using Cross-layer Approach

机译:软错误对跨层迭代学习控制与补偿的影响

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In this paper, we study the effects of radiation-induced soft errors in iterative learning control(ILC) and present the compensation techniques to make the ILC systems robust against soft errors. Soft errors are transient faults, which occur temporarily in memories where the energetic particles strike the sensitive region in the transistors mainly under abnormal conditions such as high radiation, high temperature, and high pressure. These soft errors can cause bit value changes without any notification to the controller, affect the stability of the system, and result in catastrophic consequences. First, we investigate and analyze the effects of soft errors in the ILC systems. Our analytical study shows that when a single soft error occurs in the output data from the ILC, the performance of the learning control is significantly degraded. Second, we propose novel learning methods by incorporating the existing techniques across the system abstraction levels in the ILC to compensate for soft-error-induced incorrect output. The occurrence of soft errors is estimated by using a monotonic convergence of the erroneous outputs in a cross-layer manner, and our proposed methods can significantly reduce these negative impacts on the system performance. Under the assumption of soft error occurrence, our analytic study has proved the convergence of the proposed methods in the ILC systems and our simulation results show the effectiveness of the proposed methods to efficiently reduce the impacts of soft-error-induced outputs in the ILC systems.
机译:在本文中,我们研究了辐射诱导的软错误在迭代学习控制(ILC)中的影响,并提出了补偿技术,以使ILC系统对软错误具有鲁棒性。软错误是暂时性故障,通常在高能辐射,高温和高压等异常情况下,在高能粒子撞击晶体管敏感区域的存储器中临时发生。这些软错误可能会导致位值更改而没有通知控制器,从而影响系统的稳定性,并导致灾难性后果。首先,我们调查和分析ILC系统中软错误的影响。我们的分析研究表明,当ILC的输出数据中出现单个软错误时,学习控制的性能将大大降低。其次,我们通过在ILC中跨系统抽象级别合并现有技术来提出新颖的学习方法,以补偿由软错误引起的错误输出。通过以跨层方式使用错误输出的单调收敛来估计软错误的发生,并且我们提出的方法可以显着减少这些对系统性能的负面影响。在发生软错误的假设下,我们的分析研究证明了所提出的方法在ILC系统中的收敛性,并且仿真结果表明,所提出的方法对于有效减少ILC系统中软错误引起的输出的影响是有效的。

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