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KAPow: High-Accuracy, Low-Overhead Online Per-Module Power Estimation for FPGA Designs.

, , , , , and . ACM Trans. Reconfigurable Technol. Syst., 11 (1): 2:1-2:22 (2018)

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Variation and Reliability in FPGAs., , , , and . IEEE Des. Test, 30 (6): 50-59 (2013)KAPow: A System Identification Approach to Online Per-Module Power Estimation in FPGA Designs., , , , , and . FCCM, page 56-63. IEEE Computer Society, (2016)Fault tolerant methods for reliability in FPGAs., , and . FPL, page 415-420. IEEE, (2008)Dynamic voltage & frequency scaling with online slack measurement., , and . FPGA, page 65-74. ACM, (2014)Degradation in FPGAs: measurement and modelling., , , and . FPGA, page 229-238. ACM, (2010)Improving FPGA Reliability with Wear-Levelling., and . FPL, page 323-328. IEEE Computer Society, (2011)SMI: Slack Measurement Insertion for online timing monitoring in FPGAs., , , and . FPL, page 1-4. IEEE, (2013)KOCL: Kernel-level Power Estimation for Arbitrary FPGA-SoC-accelerated OpenCL Applications., , , , , and . IWOCL, page 4:1. ACM, (2018)KAPow: High-Accuracy, Low-Overhead Online Per-Module Power Estimation for FPGA Designs., , , , , and . ACM Trans. Reconfigurable Technol. Syst., 11 (1): 2:1-2:22 (2018)KOCL: Power Self- Awareness for Arbitrary FPGA-SoC-Accelerated OpenCL Applications., , , , , and . IEEE Des. Test, 34 (6): 36-45 (2017)