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Sökning: WFRF:(Crespo Alfons)

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1.
  • Lenz, Alina, et al. (författare)
  • SAFEPOWER project : Architecture for Safe and Power-Efficient Mixed-Criticality Systems
  • 2016
  • Ingår i: 19TH EUROMICRO CONFERENCE ON DIGITAL SYSTEM DESIGN (DSD 2016). - : IEEE. - 9781509028160 ; , s. 294-300
  • Konferensbidrag (refereegranskat)abstract
    • With the ever increasing industrial demand for bigger, faster and more efficient systems, a growing number of cores is integrated on a single chip. Additionally, their performance is further maximized by simultaneously executing as many processes as possible not regarding their criticality. Even safety critical domains like railway and avionics apply these paradigms under strict certification regulations. As the number of cores is continuously expanding, the importance of cost-effectiveness grows. One way to increase the cost-efficiency of such System on Chip (SoC) is to enhance the way the SoC handles its power resources. By increasing the power efficiency, the reliability of the SoC is raised, because the lifetime of the battery lengthens. Secondly, by having less energy consumed, the emitted heat is reduced in the SoC which translates into fewer cooling devices. Though energy efficiency has been thoroughly researched, there is no application of those power saving methods in safety critical domains yet. The EU project SAFEPOWER(1) targets this research gap and aims to introduce certifiable methods to improve the power efficiency of mixed-criticality real-time systems (MCRTES). This paper will introduce the requirements that a power efficient SoC has to meet and the challenges such a SoC has to overcome.
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2.
  • Lluesma Camps, Manuel, et al. (författare)
  • Jitter Evaluation of Real-Time Control Systems
  • 2006
  • Konferensbidrag (refereegranskat)abstract
    • The implementation of industrial control applications typically introduces complexities like sampling jitter and control jitter, which have usually not been considered at the design stage. Consequently, the system behaves in a non-periodic manner and the real performance is degraded with regard to the expected response. This paper proposes a hybrid task model to reduce the impact of the scheduling on control performance. For a large batch of typical plants, we analyze how sensitive a control system is to jitter when the sampling rate is slow or fast compared to the bandwidth of the system.
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