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This edited monograph offers a summary of future mathematical
methods supporting the recent energy sector transformation. It
collects current contributions on innovative methods and
algorithms. Advances in mathematical techniques and scientific
computing methods are presented centering around economic aspects,
technical realization and large-scale networks. Over twenty authors
focus on the mathematical modeling of such future systems with
careful analysis of desired properties and arising scales.
Numerical investigations include efficient methods for the
simulation of possibly large-scale interconnected energy systems
and modern techniques for optimization purposes to guarantee stable
and reliable future operations. The target audience comprises
research scientists, researchers in the R&D field, and
practitioners. Since the book highlights possible future research
directions, graduate students in the field of mathematical modeling
or electrical engineering may also benefit strongly.
This edited monograph collects research contributions and addresses
the advancement of efficient numerical procedures in the area of
model order reduction (MOR) for simulation, optimization and
control. The topical scope includes, but is not limited to, new
out-of-the-box algorithmic solutions for scientific computing, e.g.
reduced basis methods for industrial problems and MOR approaches
for electrochemical processes. The target audience comprises
research experts and practitioners in the field of simulation,
optimization and control, but the book may also be beneficial for
graduate students alike.
This edited monograph offers a summary of future mathematical
methods supporting the recent energy sector transformation. It
collects current contributions on innovative methods and
algorithms. Advances in mathematical techniques and scientific
computing methods are presented centering around economic aspects,
technical realization and large-scale networks. Over twenty authors
focus on the mathematical modeling of such future systems with
careful analysis of desired properties and arising scales.
Numerical investigations include efficient methods for the
simulation of possibly large-scale interconnected energy systems
and modern techniques for optimization purposes to guarantee stable
and reliable future operations. The target audience comprises
research scientists, researchers in the R&D field, and
practitioners. Since the book highlights possible future research
directions, graduate students in the field of mathematical modeling
or electrical engineering may also benefit strongly.
This edited monograph collects research contributions and addresses
the advancement of efficient numerical procedures in the area of
model order reduction (MOR) for simulation, optimization and
control. The topical scope includes, but is not limited to, new
out-of-the-box algorithmic solutions for scientific computing, e.g.
reduced basis methods for industrial problems and MOR approaches
for electrochemical processes. The target audience comprises
research experts and practitioners in the field of simulation,
optimization and control, but the book may also be beneficial for
graduate students alike.
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