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contributor authorSalih, Bilal
contributor authorDas, Tuhin
date accessioned2022-02-04T21:56:15Z
date available2022-02-04T21:56:15Z
date copyright9/3/2020 12:00:00 AM
date issued2020
identifier issn0022-0434
identifier otherds_142_12_121006.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4274562
description abstractThe requirement of satisfying an integral constraint imposed on a linear system's transient step-response is considered in this paper. The problem is first analyzed to determine the specific structure of a system's transfer function that helps satisfy such constraints. Analytical results are derived for a class of second-order systems with an additional zero. The results are extended to higher order transfer functions. Subsequently, a standard compensation consisting of a combination of feedforward and feedback actions is proposed to transform a given transfer function to the desired structure. Necessary and sufficient conditions to guarantee stability of the resulting closed-loop system are derived. Next, the problem of satisfying integral constraints in the presence of parametric uncertainty is addressed by augmenting adaptive estimation strategies to the feedforward and feedback compensation structure. Simulation results are provided for validation. The theory presented here is an abstraction from power management algorithms for hybrid power systems, such as a fuel cell hybridized with an ultracapacitor. Further work is ongoing to extend the theory to nonlinear systems.
publisherThe American Society of Mechanical Engineers (ASME)
titleTransient Response of Linear Systems Under Integral Constraints
typeJournal Paper
journal volume142
journal issue12
journal titleJournal of Dynamic Systems, Measurement, and Control
identifier doi10.1115/1.4048106
journal fristpage0121007-1
journal lastpage0121007-11
page11
treeJournal of Dynamic Systems, Measurement, and Control:;2020:;volume( 142 ):;issue: 012
contenttypeFulltext


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