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This book proposes the formulation of an efficient methodology that
estimates energy system uncertainty and predicts Remaining Useful
Life (RUL) accurately with significantly reduced RUL prediction
uncertainty. Renewable and non-renewable sources of energy are
being used to supply the demands of societies worldwide. These
sources are mainly thermo-chemo-electro-mechanical systems that are
subject to uncertainty in future loading conditions, material
properties, process noise, and other design parameters.It book
informs the reader of existing and new ideas that will be
implemented in RUL prediction of energy systems in the future. The
book provides case studies, illustrations, graphs, and charts. Its
chapters consider engineering, reliability, prognostics and health
management, probabilistic multibody dynamical analysis, peridynamic
and finite-element modelling, computer science, and mathematics.
This book proposes the formulation of an efficient methodology that
estimates energy system uncertainty and predicts Remaining Useful
Life (RUL) accurately with significantly reduced RUL prediction
uncertainty. Renewable and non-renewable sources of energy are
being used to supply the demands of societies worldwide. These
sources are mainly thermo-chemo-electro-mechanical systems that are
subject to uncertainty in future loading conditions, material
properties, process noise, and other design parameters.It book
informs the reader of existing and new ideas that will be
implemented in RUL prediction of energy systems in the future. The
book provides case studies, illustrations, graphs, and charts. Its
chapters consider engineering, reliability, prognostics and health
management, probabilistic multibody dynamical analysis, peridynamic
and finite-element modelling, computer science, and mathematics.
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