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This book discusses the technical, economic, and environmental
aspects of electric vehicles and their impact on electrical grids
and energy systems. The book is divided into three parts that
include load modeling, integration and optimization, and
environmental evaluation. Theoretical background and practical
examples accompany each section and the authors include helpful
tips and hints in the load modeling and optimization sections. This
book is intended to be a useful tool for undergraduate and graduate
students, researchers and engineers who are trying to solve power
and engineering problems related electric vehicles. Provides
optimization techniques and their applications for energy systems;
Discusses the economic and environmental perspectives of electric
vehicles; Contains the most comprehensive information about
electric vehicles in a single source.
Examines dynamic models, and how time is fundamental to the
structure of the model and data as well as the understanding of how
a process unfolds Discusses mathematical modeling with soft
computing and the implementations of uncertain mathematical models
Examines how uncertain dynamic systems models include uncertain
state, uncertain state space and uncertain state's transition
functions Assists readers to become familiar with many soft
numerical methods to simulate the solution function's behavior
Examines dynamic models, and how time is fundamental to the
structure of the model and data as well as the understanding of how
a process unfolds Discusses mathematical modeling with soft
computing and the implementations of uncertain mathematical models
Examines how uncertain dynamic systems models include uncertain
state, uncertain state space and uncertain state’s transition
functions Assists readers to become familiar with many soft
numerical methods to simulate the solution function’s behavior
This book discusses the technical, economic, and environmental
aspects of electric vehicles and their impact on electrical grids
and energy systems. The book is divided into three parts that
include load modeling, integration and optimization, and
environmental evaluation. Theoretical background and practical
examples accompany each section and the authors include helpful
tips and hints in the load modeling and optimization sections. This
book is intended to be a useful tool for undergraduate and graduate
students, researchers and engineers who are trying to solve power
and engineering problems related electric vehicles. Provides
optimization techniques and their applications for energy systems;
Discusses the economic and environmental perspectives of electric
vehicles; Contains the most comprehensive information about
electric vehicles in a single source.
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