Books on the topic 'Hybrid Control Design'

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1

1966-, Jiang Bin, and Cocquempot Vincent, eds. Fault tolerant control design for hybrid systems. Berlin: Springer, 2010.

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2

Yang, Hao, Bin Jiang, and Vincent Cocquempot. Fault Tolerant Control Design for Hybrid Systems. Berlin, Heidelberg: Springer Berlin Heidelberg, 2010. http://dx.doi.org/10.1007/978-3-642-10681-1.

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3

Lam, Chi-Seng, and Man-Chung Wong. Design and Control of Hybrid Active Power Filters. Berlin, Heidelberg: Springer Berlin Heidelberg, 2014. http://dx.doi.org/10.1007/978-3-642-41323-0.

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4

Schuring, J. Frequency response analysis of hybrid systems. Amsterdam: National Aerospace Laboratory, 1987.

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5

S, Engell, Frehse G, and Schnieder Eckehard, eds. Modelling, analysis, and design of hybrid systems. Berlin: Springer, 2002.

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6

Jager, Bram. Optimal Control of Hybrid Vehicles. London: Springer London, 2013.

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7

Danley, D. R. Development of photovoltaic-diesel hybrid system design incorporating advanced control algorithm. Ottawa: The Branch, 1990.

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8

G, Cassandras Christos, and International Federation of Automatic Control, eds. Analysis and design of hybrid systems 2006: A proceedings volume from the 2nd IFAC Conference, 7-9 June, 2006, Alghero, Italy. Oxford: Elsevier for International Federation of Automatic Control, 2006.

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9

Hu, Donghai. Design and Control of Hybrid Brake-by-Wire System for Autonomous Vehicle. Singapore: Springer Singapore, 2022. http://dx.doi.org/10.1007/978-981-16-8946-8.

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10

Magnus, Egerstedt, and Mishra Bhubaneswar 1958-, eds. Hybrid systems: Computation and control : 11th international workshop, HSCC 2008, St. Louis, MO, USA, April 22-24, 2008 : proceedings. Berlin: Springer, 2008.

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11

Matveev, Alexy S. Qualitative theory of hybrid dynamical systems. Boston: Birkhäuser, 2000.

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12

ADHS, 03 (2003 St Malo France). Analysis and design of hybrid systems 2003: ADHS 03 : a proceedings volume from the IFAC Conference, St. Malo, Brittany, France, 16-18 June 2003. Oxford, UK: Elsevier, 2003.

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13

IFAC Conference on Analysis and Design of Hybrid Systems (2003 St. Malo, France). Analysis and design of hybrid systems 2003 (ADHS 03): A proceedings volume from the IFAC Conference, St. Malo, Brittany, France, 16-18 June 2003. Oxford, UK: Elsevier, 2003.

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14

Christofides, Panagiotis D. Control of nonlinear and hybrid process systems: Designs for uncertainty, constraints and time-delays. Berlin: Springer, 2005.

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15

H, El-Farra Nael, ed. Control of nonlinear and hybrid process systems: Designs for uncertainty, constraints and time-delays. Berlin: Springer, 2005.

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16

Christofides, Panagiotis D. Control of nonlinear and hybrid process systems: Designs for uncertainty, constraints and time-delays. Berlin: Springer, 2005.

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17

Busacca, Maurizio, and Roberto Paladini. Collaboration Age. Venice: Fondazione Università Ca’ Foscari, 2020. http://dx.doi.org/10.30687/978-88-6969-424-0.

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Recently, public policies of urban regeneration have intensified and multiplied. They are being promoted with the aim to start social and economic dynamics within the local context which is subject to intervention. From the empirical analysis, we realise that such activities are mainly implemented by three subjects or by mixed coalitions (public institutions, actors of the third sector and companies). Within them, each player is moved by a multiplicity of interests and goals that go beyond their own nature – public interest, market and mutualism – and tend to redefine themselves, thus becoming hybrid forms of production of value (social, economic, cultural). By studying a number Italian and Catalan cases, this essay deals with the theory that, under specific conditions and configurations, a collaborative direction – of organization, production and design – would give life to successful procedures, even without the identification of a one-best-way. The collaboration is not simply a choice of operation, but a real production method which mobilises social resources to create hybrid solutions – between state, market and society – to complex issues that could not be faced solely with the use of the rationale of action of one among the three actors. In this framework, the systems of relations and interactions between players and shared capital become an essential condition for the success of every initiative of urban redevelopment, or failure thereof. Such initiatives are brought to life by the strategic role of individuals who foster connections as well as the dissemination of non-redundant information between social networks, and collective and individual actors which would otherwise be separated and barely able to communicate and collaborate with each other. In addition to the functions carried out by knowledge brokers, that have been extensively described in organisational studies and economic sociology, the aforementioned figures act as real social enzymes, that is to say, they handle the available information and function as catalysts of social processes of production of knowledge. Moreover, they increase the reaction speed, working on mechanisms which control the spontaneity.
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18

Hybrid Electric Vehicle Design And Control Intelligent Omnidirectional Hybrids. McGraw-Hill Education - Europe, 2013.

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19

Jager, Bram, John Kessels, and Thijs Keulen. Optimal Control of Hybrid Vehicles. Springer, 2013.

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20

Lam, Chi-Seng, and Man-Chung Wong. Design and Control of Hybrid Active Power Filters. Springer, 2013.

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21

Lam, Chi-Seng, and Man-Chung Wong. Design and Control of Hybrid Active Power Filters. Springer London, Limited, 2013.

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22

Schnieder, E., G. Frehse, and S. Engell. Modelling, Analysis and Design of Hybrid Systems. Springer, 2014.

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23

Schnieder, E., G. Frehse, and S. Engell. Modelling, Analysis and Design of Hybrid Systems. Springer London, Limited, 2003.

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24

Taghavipour, Amir, Mahyar Vajedi, and Nasser L. Azad. Intelligent Control of Connected Plug-in Hybrid Electric Vehicles. Springer, 2018.

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25

Taghavipour, Amir, Mahyar Vajedi, and Nasser L. Azad. Intelligent Control of Connected Plug-In Hybrid Electric Vehicles. Springer International Publishing AG, 2019.

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26

Kirchner, Frank, Andreas Mueller, and Shivesh Kumar. Biologically Inspired Series-Parallel Hybrid Robots: Design, Analysis and Control. Elsevier Science & Technology, 2023.

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27

Kirchner, Frank, Andreas Mueller, and Shivesh Kumar. Biologically Inspired Series-Parallel Hybrid Robots: Design, Analysis and Control. Elsevier Science & Technology Books, 2023.

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28

Rawson, Jenny Louise. Evaluation of stability margins and design of robust controllers for hybrid systems. 1990.

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29

Design and Control of Hybrid Brake-By-Wire System for Autonomous Vehicle. Springer, 2023.

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30

Soong, T. T., S. Y. Chu, and A. M. Reinhorn. Active, Hybrid, and Semi-active Structural Control: A Design and Implementation Handbook. Wiley & Sons Australia, Limited, John, 2002.

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31

Hu, Donghai. Design and Control of Hybrid Brake-By-Wire System for Autonomous Vehicle. Springer Singapore Pte. Limited, 2022.

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32

Active, Hybrid, and Semi-active Structural Control: A Design and Implementation Handbook. Wiley, 2005.

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33

Modelling, Analysis and Design of Hybrid Systems (Lecture Notes in Control and Information Sciences). Springer, 2004.

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34

Crisostomi, Emanuele, Robert Shorten, Sonja Stüdli, and Fabian Wirth. Electric and Plug-In Hybrid Vehicle Networks: Optimization and Control. Taylor & Francis Group, 2017.

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35

Crisostomi, Emanuele, Robert Shorten, Sonja Stüdli, and Fabian Wirth. Electric and Plug-In Hybrid Vehicle Networks: Optimization and Control. Taylor & Francis Group, 2017.

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36

Electric and Plug-In Hybrid Vehicle Networks: Optimization and Control. Taylor & Francis Group, 2017.

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37

(Editor), Christos Cassandras, Alessandro Giua (Editor), Carla Seatzu (Editor), and Janan Zaytoon (Editor), eds. Analysis and Design of Hybrid Systems 2006: A Proceedings volume from the 2nd IFAC Conference, Alghero, Italy, 7-9 June 2006 (IPV - IFAC Proceedings Volume) (IPV - IFAC Proceedings Volume). Elsevier Science, 2007.

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38

(Editor), Christos Cassandras, Alessandro Giua (Editor), Carla Seatzu (Editor), and Janan Zaytoon (Editor), eds. Analysis and Design of Hybrid Systems 2006: A Proceedings volume from the 2nd IFAC Conference, Alghero, Italy, 7-9 June 2006 (IPV - IFAC Proceedings Volume) (IPV - IFAC Proceedings Volume). Elsevier Science, 2007.

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39

Matveev, Alexey S., and Andrey V. Savkin. Qualitative Theory of Hybrid Dynamical Systems (Control Engineering). Birkhauser, 2000.

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40

Matveev, Alexey S., and Andrey V. Savkin. Qualitative Theory of Hybrid Dynamical Systems. Birkhauser Verlag, 2012.

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41

Koppell, Jonathan G. S. The Politics of Quasi-Government: Hybrid Organizations and the Dynamics of Bureaucratic Control (Theories of Institutional Design). Cambridge University Press, 2006.

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42

Koppell, Jonathan G. S. The Politics of Quasi-Government: Hybrid Organizations and the Dynamics of Bureaucratic Control (Theories of Institutional Design). Cambridge University Press, 2003.

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43

Sklar, Marisa, Joanna C. Moullin, and Gregory A. Aarons. Study Design, Data Collection, and Analysis in Implementation Science. Edited by David A. Chambers, Wynne E. Norton, and Cynthia A. Vinson. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780190647421.003.0006.

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This chapter provides an introduction to study design, data collection, and analysis in implementation science. Although the randomized controlled trial is frequently employed in implementation science, a number of alternatives are relied on for addressing the unique challenges present. Alternatives include the cluster randomized control trial, roll-out designs such as the stepped wedge, cumulative trial, and effectiveness–implementation hybrid designs. Data collection and data analytic techniques must also address the unique challenges present in implementation science. Often, implementation occurs over time, often, across complex, multilevel contexts. Implementation scientists frequently utilize mixed, qualitative, and quantitative methodologies for collecting, analyzing, and interpreting data. Data represent the outer context of service systems and the inner context of organizations such that the data are often nested and hierarchical in nature. This chapter highlights the previously mentioned topics, particularly as they relate to currently funded implementation studies focused on the cancer control continuum.
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44

Christofides, P. D., and Nael El-Farra. Control of Nonlinear and Hybrid Process Systems: Designs for Uncertainty, Constraints and Time-Delays (Lecture Notes in Control and Information Sciences) ... Notes in Control and Information Sciences). Springer, 2005.

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45

ASME. Print Proceedings of the ASME 2017 Internal Combustion Engine Fall Technical Conference : Volume 2: Emissions Control Systems; Instrumentation, Controls, and Hybrids; Numerical Simulation; Engine Design and Mechanical Development. American Society of Mechanical Engineers, The, 2017.

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46

American Society of Mechanical Engineers. Print Proceedings of the ASME 2018 Internal Combustion Engine Fall Technical Conference : Volume 2: Emissions Control Systems; Instrumentation, Controls, and Hybrids; Numerical Simulation; Engine Design and Mechanical Development. American Society of Mechanical Engineers, The, 2019.

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47

ASME. Print Proceedings of the ASME 2015 Internal Combustion Engine Division Fall Technical Conference : Volume 2: Emissions Control Systems; Instrumentation, Controls, and Hybrids; Numerical Simulation; Engine Design and Mechanical Development. American Society of Mechanical Engineers, The, 2015.

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48

(Translator), Anthony Kimm, ed. Clean Car Wars: How Honda and Toyota are Winning the Battle of the Eco-Friendly Autos. Wiley, 2008.

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49

Datta, Debasish. Optical Networks. Oxford University Press, 2021. http://dx.doi.org/10.1093/oso/9780198834229.001.0001.

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This book presents an in-depth deliberation on optical networks in four parts, capturing the past, present, and ensuing developments in the field. Part I has two chapters presenting an overview of optical networks and the enabling technologies. Part II has three chapters dealing with the single-wavelength optical networks: optical LANs/MANs, optical access networks using passive optical network architecture, SONET/SDH, optical transport network and resilient packet ring. Part III consists of four chapters on WDM-based optical networks, including WDM-based local/metropolitan networks (LANs/MANs) using single and multihop architectures over passive-star couplers, WDM/TWDM access networks as an extension of PONs with WDM transmission, WDM metro ring networks covering circuit-switched (using point-to-point WDM and wavelength-routed transmission) plus packet-switched architectures and WDM long-haul backbone networks presenting the offline and online design methodologies using wavelength-routed transmission. Part IV deals with some selected topics in six chapters. The first deals with transmission impairments and power-consumption issues in optical networks, while the next three chapters deal with the survivable optical networks, network control and management techniques, including GMPLS, ASON, and SDN/SDON, and datacenter networks using electrical, optical, and hybrid switching techniques. The final two chapters present elastic optical networks using flexible grid for better utilization of the optical-fiber spectrum and optical packet and burst-switched networks. The three appendices present the basics of the linear programming techniques, noise processes encountered in the optical communication systems, and the fundamentals of queuing theory and its applications in telecommunication networks. (238 words)
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