• Energy Efficiency through Significance-Based Computing 

      Nikolopoulos, D. S.; Vandierendonck, H.; Bellas, N.; Antonopoulos, C. D.; Lalis, S.; Karakonstantis, G.; Burg, A.; Naumann, U. (2014)
      An extension of approximate computing, significance-based computing exploits applications' inherent error resiliency and offers a new structural paradigm that strategically relaxes full computational precision to provide ...
    • Fast dynamic binary rewriting for flexible thread migration on shared-ISA heterogeneous MPSoCs 

      Georgakoudis, G.; Nikolopoulos, D. S.; Vandierendonck, H.; Lalis, S. (2014)
      Heterogeneous MPSoCs where different types of cores share a baseline ISA but implement different operational accelerators combine programmability with flexible customization. They hold promise for high performance under ...
    • A programming model and runtime system for significance-aware energy-efficient computing 

      Vassiliadis, V.; Parasyris, K.; Chalios, C.; Antonopoulos, C. D.; Lalis, S.; Bellas, N.; Vandierendonck, H.; Nikolopoulos, D. S. (2015)
      We introduce a task-based programming model and runtime system that exploit the observation that not all parts of a program are equally significant for the accuracy of the end-result, in order to trade off the quality of ...