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001 | 9783110677942 | ||
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020 | _a9783110677942 | ||
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_a10.1515/9783110677942 _2doi |
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035 | _a(DE-B1597)536610 | ||
035 | _a(OCoLC)1262049502 | ||
040 |
_aDE-B1597 _beng _cDE-B1597 _erda |
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041 | 0 | _aeng | |
044 |
_agw _cDE |
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_aTEC009000 _2bisacsh |
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100 | 1 |
_aSchaum, Alexander, _eauthor. _4aut _4http://id.loc.gov/vocabulary/relators/aut _976429 |
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245 | 1 | 0 |
_aDissipativity in Control Engineering : _bApplications in Finite- and Infinite-Dimensional Systems / _cAlexander Schaum. |
264 | 1 |
_aBerlin ; _aBoston : _bDe Gruyter, _c[2021] |
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264 | 4 | _c©2021 | |
300 | _a1 online resource (XIV, 228 p.) | ||
336 |
_atext _btxt _2rdacontent |
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337 |
_acomputer _bc _2rdamedia |
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_aonline resource _bcr _2rdacarrier |
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_atext file _bPDF _2rda |
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505 | 0 | 0 |
_tFrontmatter -- _tPreface -- _tContents -- _tAbout the author -- _tList of Figures -- _tPart I: Introduction and motivation -- _t1 Motivation and problem formulation -- _tPart II: Theoretical foundations -- _t2 Stability, dissipativity and some system-theoretic concepts -- _t3 Dissipativity-based observer and feedback control design -- _tPart III: Application examples -- _tIntroduction -- _t4 Finite-dimensional systems -- _t5 Infinite-dimensional systems -- _t6 Conclusions and outlook -- _tA Lemmata on quadratic forms -- _tB Kalman decomposition for observer design -- _tC The algebraic Riccati equation, optimality and dissipativity -- _tD Kernel derivations for the backstepping approach -- _tBibliography -- _tIndex |
506 | 0 |
_arestricted access _uhttp://purl.org/coar/access_right/c_16ec _fonline access with authorization _2star |
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520 | _aDissipativity, as a natural mechanism of energy interchange is common to many physical systems that form the basis of modern automated control applications. Over the last decades it has turned out as a useful concept that can be generalized and applied in an abstracted form to very different system setups, including ordinary and partial differential equation models. In this monograph, the basic notions of stability, dissipativity and systems theory are connected in order to establish a common basis for designing system monitoring and control schemes. The approach is illustrated with a set of application examples covering finite and infinite-dimensional models, including a ship steering model, the inverted pendulum, chemical and biological reactors, relaxation oscillators, unstable heat equations and first-order hyperbolic integro-differential equations. | ||
530 | _aIssued also in print. | ||
538 | _aMode of access: Internet via World Wide Web. | ||
546 | _aIn English. | ||
588 | 0 | _aDescription based on online resource; title from PDF title page (publisher's Web site, viewed 01. Dez 2022) | |
650 | 4 |
_aRegelungstechnik. _976430 |
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650 | 4 |
_aSelbstorganisierung. _976431 |
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650 | 4 |
_aSteuerungstechnik. _976432 |
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650 | 4 |
_aendlichdimensionale Systeme. _976433 |
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650 | 4 |
_aunendlichdimensionale Systeme. _976434 |
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650 | 7 |
_aTechnology & Engineering / Engineering (General). _2bisacsh _975211 |
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773 | 0 | 8 |
_iTitle is part of eBook package: _dDe Gruyter _tDG Ebook Package English 2021 _z9783110750720 |
773 | 0 | 8 |
_iTitle is part of eBook package: _dDe Gruyter _tDG Plus DeG Package 2021 Part 1 _z9783110750706 |
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_iTitle is part of eBook package: _dDe Gruyter _tEBOOK PACKAGE Engineering, Computer Sciences 2021 English _z9783110754070 |
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_cEPUB _z9783110678093 |
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_cprint _z9783110677935 |
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856 | 4 | 0 | _uhttps://doi.org/10.1515/9783110677942 |
856 | 4 | 0 | _uhttps://www.degruyter.com/isbn/9783110677942 |
856 | 4 | 2 |
_3Cover _uhttps://www.degruyter.com/document/cover/isbn/9783110677942/original |
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