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September 1, 2005IEEE Power and Energy Magazine1,628 citations

Toward a smart grid: power delivery for the 21st century

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SAS. Massoud AminBWB.F. Wollenberg

Key Points

  • Examine framework designs to enhance the security, agility, and survivability of modern large-scale power delivery networks under unpredictable threats.
  • Reviewed foundational concepts of online parameter estimation and real-time adaptive control architectures.
  • Evaluated historical engineering applications from flight tests of self-healing, reconfigurable control systems in damaged aircraft.
  • Demonstrated the translation of fast modeling and reconfigurable aircraft control theory to large-scale electrical grid stabilization.
  • Identified real-time parameter tracking as a critical requirement for enabling self-healing responses to unanticipated power infrastructure failures.

Abstract

In this article, we present the security, agility, and robustness/survivability of a large-scale power delivery infrastructure that faces new threats and unanticipated conditions. By way of background, we present a brief overview of the past work on the challenges faced in online parameter estimation and real-time adaptive control of a damaged F-15 aircraft. This work, in part, provided the inspiration and laid the foundation in the 1990s for the flight testing of a fast parameter estimation/modeling and reconfigurable aircraft control system that allowed the F-15 to become self-healing in the face of damaged equipment.

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Cite This Study

Amin et al. (2005) studied this question.

synapsesocial.com/papers/69daa5a685037e71b268461ahttps://doi.org/10.1109/mpae.2005.1507024
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