作者: C. Yfoulis , D. Giaouris , C. Ziogou , F. Stergiopoulos , S. Voutetakis
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摘要: This paper aims at presenting new ideas and insights towards a novel optimal energy-based stabilizing control approach for power electronic converters. The or Lyapunov-based paradigm is well-known in the area of DC-DC Such laws rely on an Lyapunov function to speed energy dissipation by which converters reach their steady-state operation are parameterized positive scalar λ, whose selection critical performance closed-loop system. A typical problem formulated, solution involves search value λ. Two different averaging continuous-time models adopted (nonlinear linearized) corresponding methods solving presented. In general nonlinear case, reduced optimization analytical gradient information available. linearized simple finding minima polynomial evaluated boost converter using simulation.