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This book provides an overview of essential research on and
developments in the electrohydrodynamic (EHD) direct-writing
technique and its applications. Firstly, it presents mechano- and
helix electrospinning methods to achieve direct writing of
straight/serpentine micro/nano fibers in high resolution. Secondly,
it examines functional inks and multi nozzle arrays for EHD
printing, which are used to efficientlyform patterns and devices.
Thirdly, the book discusses the various control methods adopted in
the context of EHD to improve the controllability of the
electrospun fibers. Lastly, it addresses the equipment used in EHD
printing and its applications, while also outlining challenges for
the field's future development. Combining academic and industrial
viewpoints, the book provides in-depth information for experienced
researchers, as well as a valuable guide for those just entering
the field.
This book highlights cooperative coverage control approaches of
multi-agent systems in uncertain environments and their
applications in various fields. A novel theoretical formulation of
multi-agent coverage is proposed to fulfill the coverage task via
divide-and-conquer scheme. By taking workload partition and
sweeping operations simultaneously, a distributed sweep coverage
algorithm of multi-agent systems is developed to cooperatively
complete the workload on the given region, and its input-to-state
stability is guaranteed in theory. Moreover, the coverage
performance is evaluated by estimating the error between the actual
coverage time and the optimal time. Three application scenarios are
presented to demonstrate the advantages of cooperative coverage
control approaches in missile interception, intelligent
transportation systems and environment monitoring, respectively.
This book provides an overview of essential research on and
developments in the electrohydrodynamic (EHD) direct-writing
technique and its applications. Firstly, it presents mechano- and
helix electrospinning methods to achieve direct writing of
straight/serpentine micro/nano fibers in high resolution. Secondly,
it examines functional inks and multi nozzle arrays for EHD
printing, which are used to efficientlyform patterns and devices.
Thirdly, the book discusses the various control methods adopted in
the context of EHD to improve the controllability of the
electrospun fibers. Lastly, it addresses the equipment used in EHD
printing and its applications, while also outlining challenges for
the field's future development. Combining academic and industrial
viewpoints, the book provides in-depth information for experienced
researchers, as well as a valuable guide for those just entering
the field.
This book highlights cooperative coverage control approaches of
multi-agent systems in uncertain environments and their
applications in various fields. A novel theoretical formulation of
multi-agent coverage is proposed to fulfill the coverage task via
divide-and-conquer scheme. By taking workload partition and
sweeping operations simultaneously, a distributed sweep coverage
algorithm of multi-agent systems is developed to cooperatively
complete the workload on the given region, and its input-to-state
stability is guaranteed in theory. Moreover, the coverage
performance is evaluated by estimating the error between the actual
coverage time and the optimal time. Three application scenarios are
presented to demonstrate the advantages of cooperative coverage
control approaches in missile interception, intelligent
transportation systems and environment monitoring, respectively.
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