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Titlebook: Network Optimization Methods in Passivity-Based Cooperative Control; Miel Sharf Book 2021 The Editor(s) (if applicable) and The Author(s),

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Miel Sharfing major contributors. This book is dedicated to the detection of singlet oxygen, discussing possibilities, pitfalls and limits of the various methods with a special focus on time-resolved phosphorescence and the kinetics of singlet oxygen generation and decay including involved and related process
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ses are spatially separated and which additionally increases the variety of micro-environments. Although prokaryotes have no compartments and cellular processes occur throughout the cell interior, they are no-less complicated from the point of view of .O. phosphorescence measurement. One of the fact
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2190-5053 roaches for designing multi-agent control systems.Presents a.This book establishes an important mathematical connection between cooperative control problems and network optimization problems. It shows that many cooperative control problems can in fact be understood, under certain passivity assumptio
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A Network Optimization Framework for Passive-Short Agents,n to generalize the network optimization framework by augmenting the network optimization problems associated with the closed-loop system, and interpret the augmentation as a transformation of the agents.
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A Network Optimization Framework for Controller Synthesis, . satisfies the control goal. We focus on final-value synthesis, in which the control goal is that some specified signal in the system (e.g., the agents’ outputs) converges to a given desired steady-state value.
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Applications of the Network Optimization Framework in Network Identification,ogenous inputs into the network and measure the corresponding output. We use the dependence of the network optimization problem on the underlying graph and describe a procedure for reconstructing the graph G from input and output measurements of the system. We then prove that the procedure is optimal in sense of time complexity.
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