A. Abakar, J. Coulomb, and Y. , Radial Basis Function Network for Acceleration of Genetic Algorithm Optimization Procedures, Symposium on Numerical Field Calculation in Electrical Engineering, AustriaUsing the Portunus C-Programming Interface, 1998.

/. Adapted-solutions and . Cedrat, Flux-Portunus Co-Simulation" document technique, 2009.

G. Akoun and J. Yonnet, 3D analytical calculation of the forces exerted between two cuboidal magnets, IEEE Transactions on Magnetics, vol.20, issue.5, pp.1984-98
DOI : 10.1109/TMAG.1984.1063554

D. Alciatore and M. Histand, Introduction to Mechatronics and Measurement Systems, 1998.

L. Allain, Capitalisation et traitement des modèles pour la conception en génie électrique, thèse de l'Institut National Polytechnique de Grenoble, pp.2003-2012

H. Allag, J. Yonnet, and B. Delinchant, Analytical Calculation of the Interactions between two Cylinder-shaped Magnets, pp.2009-2016
URL : https://hal.archives-ouvertes.fr/hal-00440324

I. Ammar, Conception collaborative en génie électrique, thèse de l'Institut National Polytechnique de Grenoble, 2007.

P. J. Ashenden, G. D. Peterson, and D. A. Teegarden, The System Designer's Guide to VHDL-AMS : Analog, Mixed-Signal, and Mixed-Technology Modeling, 2002.

P. J. Ashenden, G. D. Peterson, and D. A. Teegarden, The System Designer's Guide to VHDL-AMS: Analog, Mixed-Signal, and Mixed-Technology Modeling, 2004.

E. Atienza, M. Perrault, F. Wurtz, V. Mazauric, and J. Bigeon, A methodology for the sizing and the optimization of an electromagnetic release, IEEE Transactions on Magnetics, 2000.

E. Atienza, Méthodologie et outils pour le dimensionnement, Thèse de l'Institut National Polytechnique de Grenoble, 2003.

R. Bachmanna, L. Brülla, . Th, U. Mrziglodb, A. Pallaskea et al., On methods for reducing the index of differential algebraic equationsA micro electromagnetic generator for vibration energy harvesting, Micromech. Microeng, pp.2007-2010, 1990.

T. Bertram, F. Bekes, R. Greul, O. Hanke, C. Has et al., Modelling and simulation for mechatronic design in automotive systems, Control Engineering Practice, vol.11, issue.2, 2003.
DOI : 10.1016/S0967-0661(02)00076-X

J. Bézivin, La transformation de modèles". INRIA-ATLAS &, 2003.

X. Blanc, MDA en action, Ingénierie logicielle guidée par les modèles, Eyrolles, pp.2005-98

J. Bocquet, Ingénierie simultanée, conception intégréeConception de produits mécaniques : méthodes, modèles, outils, 1998.

H. Boussetta, Modélisation multi-physiques et simulation globale de systèmes autonomes sur puce, thèse 'Institut polytechnique de Grenoble, pp.2010-2016

J. Brauer, Magnetic Actuators and Sensors", Johny wily and sons, INC publications, 2006.
DOI : 10.1002/0471777714

K. Brenan, S. Campbell, and L. Petzold, Numerical Solution of Initial-Value Problems in Di_erential-Algebraic Equations, SIAM's Classics in Applied Mathematics. Siam, pp.1996-94

P. Brown, A. Hindmarsh, and L. Petzold, Using Krylov methods in the solution of largescale differential-algebraic systems, SIAM J Sci Comput, pp.1994-98

P. Brown, A. Hindmarsh, and L. Petzold, Consistent Initial Condition Calculation for Differential-Algebraic Systems, SIAM Journal on Scientific Computing, vol.19, issue.5, pp.1998-1999
DOI : 10.1137/S1064827595289996

N. Bushyager, M. Tentzeris, L. Gatewood, and J. Denatale, A novel adaptive approach to modeling MEMS tunable capacitors using MRTD and FDTD techniques, 2001 IEEE MTT-S International Microwave Sympsoium Digest (Cat. No.01CH37157), 2001.
DOI : 10.1109/MWSYM.2001.967303

M. C. Costa, J. Coulomb, Y. Marechal, and S. Nabeta, An adaptive method applied to the diffuse element approximation in optimization process, IEEE Transactions on Magnetics, vol.5, 2001.

]. S. Cam-96, K. Campbell, L. Brenan, and . Petzold, Numerical Solution of Initial Value Problems in Differential Algebraic Equations, SIAM, pp.1996-91

F. Cellier, Continuous System Modeling, 1991.
DOI : 10.1007/978-1-4757-3922-0

Y. Chapuis and Y. Hervé, Conception de systèmes hétérogènes et futur de la CAO multi-physique, Journée SOC-SIP, 2008.

H. L. Chetouani, Microsystèmes et micromanipulation à lévitation diamagnétique : conception, réalisation et application à la micro fluidique digitale et à la biologie, Thèse Institut National Polytechnique de Grenoble, 2007.

Y. Chung and A. W. Westerberg, A proposed numerical algorithm for solving nonlinear index problems, Industrial & Engineering Chemistry Research, vol.29, issue.7, pp.1990-187
DOI : 10.1021/ie00103a023

P. G. Ciarlet, Introduction à l'analyse numérique matricielle et à l'optimisation, 1990.

J. Coulomb and J. Sabonnadière, CAO en électrotechnique, pp.1985-1993

J. Wiley and I. , OptimizationThe Finite Element Method for Electromagnetic Modeling 3, 2008.

O. Cugat, G. Reyne, J. Delamare, and H. Rostaing, Novel magnetic micro-actuators and systems (MAGMAS) using permanent magnets, Sensors and Actuators A: Physical, vol.129, issue.1-2, pp.2006-2013
DOI : 10.1016/j.sna.2005.09.058

O. Cugat, G. Reyne, and J. Delamare, Magnetic Microsystems: MAG-MEMS, 2007.
DOI : 10.1007/978-1-4020-6338-1_7

URL : https://hal.archives-ouvertes.fr/hal-00202690

R. David, Modeling of Hybrid Systems by Continuous or Hybrid Petri Nets", International Workshop Petri Nets and Performance Models, Saint-Malo, 1997.

B. Delinchant, V. Riboulet, L. Gerbaud, P. Marin, F. Noël et al., Cooperative Design among Mechanical and Electrical Engineers over the Internet: some Implications for Tools supporting Human Communication Between Various Professional Cultures, IEEE Transactions on Professional Communication. Special Issue : International Communication, Technology, and Culture, pp.2002-2004

B. Delinchant, F. Wurtz, and J. Fandino, Mixing of FEM and Analytical Modeling: Preliminary Design of a Transformer, International workshop on OIPE, 2002.
DOI : 10.1007/978-94-017-2494-4_24

URL : https://hal.archives-ouvertes.fr/hal-00333995

B. Delinchant, Un Environnement à base de Composants, thèse à Institut National Polytechnique de Grenoble, 2003.
URL : https://hal.archives-ouvertes.fr/tel-00332801

J. Delamare and S. Basrour, Hybridization of Magnetism and Piezoelectricity for an Energy Scavenger based on Temporal Variation of Temperature, DTIP, pp.2008-2019
URL : https://hal.archives-ouvertes.fr/hal-00277732

B. Delinchant, La CAO et l'optimisation de systèmes, une approche par couplages dynamiques de composants, HDR, Institut National Polytechnique Grenoble, pp.2011-2023

B. Delinchant, P. Y. Gibello, F. Verdière, and F. Wurtz, Distribution des services de calcul pour la conception et la gestion optimale des bâtiments : perspectives des approches composants déployés via le cloud computing, 2012.

B. Delinchant, L. Estrabaud, L. Gerbaud, and F. Wurtz, Multi-Criteria Design and Optimization Tools, 2012.
DOI : 10.1002/9781118561812.ch5

P. Desgreys, Composant optoélectronique : diode laser" in "Modélisation de systèmes complexes avec VHDL-AMS, Lausanne, Presses Polytechniques Universitaires Romandes, 2004.

T. P. Do, Simulation dynamique des actionneurs et capteurs électromagnétiques par réseaux de réluctances : modèles, méthodes et outils, Thèse de l'Institut Polytechnique de Grenoble, 2010.

B. and D. Peloux, Modélisation des actionneurs électromagnétiques par réseaux de reluctances, Thèse de l, pp.2006-188

B. Du-peloux and G. Lacombe, Engineering-focused software for the design of the drive of electrical machines, 2008 18th International Conference on Electrical Machines, pp.2008-2018
DOI : 10.1109/ICELMACH.2008.4800214

D. Duret, L. Gerbaud, F. Wurtz, A. Rezgui, B. Delinchant et al., Optimisation and simulation methodology for passive ADSL splitter design, 2010 XIth International Workshop on Symbolic and Numerical Methods, Modeling and Applications to Circuit Design (SM2ACD), 2010.
DOI : 10.1109/SM2ACD.2010.5672289

URL : https://hal.archives-ouvertes.fr/hal-00569510

P. Enciu, Dérivation automatique pour le calcul des sensibilités appliqué au dimensionnement en génie électrique, Thèse de l'Institut National Polytechnique de Grenoble, 2009.

F. Felgner, S. Agustina, B. Cladera, R. Mertz, and . Litz, Simulation of thermal building behaviour in Modelica, Modelica Conference, 2002.

R. Oliver and R. , The design of experiments, pp.1935-97

P. Fishwick, Computer simulation, IEEE Potentials, vol.15, issue.1, 1997.
DOI : 10.1109/45.481372

V. Fischer, L. Allain, and L. Gerbaud, RAMA :Alightweight rule-based tool for expressions analysis and code generation, Proc. Simul. Symp. Exhibition, pp.2003-2007

V. Fischer, Composants logiciels pour le dimensionnement en génie électrique. Application a la résolution d'équations différentielles, Thèse de l'Institut National Polytechnique de Grenoble, 2004.

P. Fritzson and V. Engelson, Modelica ??? A unified object-oriented language for system modeling and simulation, Object Orienting Programming, vol.1445, 1998.
DOI : 10.1007/BFb0054087

P. Fritzson, S. Furic-journées, «. , ». Insa-lyon, S. Gaaloul et al., Principles of Object-Oriented Modeling and Simulation with Modelica 2.1Hybrid acausal modeling using Modelica : Presentation of ModelicaInterface Component Architecture for building simulation, Conference of International Building Performance Simulation Association, 2004.

S. Gaaloul, X. H. Binh-le, B. Delinchant, F. Wurtz, and S. Ploix, Architecture à composants de co-simulation appliquée au couplage de la thermique du bâtiment au comportement de l'usager, Méthode numériques et interfaces graphiques pour un outil de simulation des actionneurs électromécaniques, 2008.

J. Gauthier, Vérification de propriétés SysML par transformation de modèle vers VHDL-AMS, pp.2012-71

C. W. Gear, Simultaneous Numerical Solution of Differential-Algebraic Equations, IEEE Transactions on Circuit Theory, vol.18, issue.1, 1971.
DOI : 10.1109/TCT.1971.1083221

C. W. Gear, B. Leimkuhler, and G. K. Gupta, Automatic integration of Euler-Lagrange equations with constraints, Journal of Computational and Applied Mathematics, vol.12, issue.13, 1985.
DOI : 10.1016/0377-0427(85)90008-1

C. W. Gear, Differential-Algebraic Equation Index Transformations, SIAM Journal on Scientific and Statistical Computing, vol.9, issue.1, 1988.
DOI : 10.1137/0909004

D. Gibson, H. Carter, and C. Purdy, The use of hardware description languages in the development of microelectromechanical systems, Analog Integrated Circuits and Signal Processing, 2001.

E. Griepentrog and R. Marz, Differential Algebraic Equations and Their Numerical Treatment, Teubner-Textezur Math, 1986.

R. Guelaz, D. Kourtiche, M. Nadi, and Y. Herve, Ultrasonic piezoceramic transducer modeling with VHDL-AMS IEEE, Sensors Proceedings of IEEE, 2004.
URL : https://hal.archives-ouvertes.fr/hal-00207856

R. Guelaz, Modélisation de systèmes ultrasonores avec VHDL-AMS : Application à la mesure du paramètre de non linéarité B/A, Thèse de l'Université Henri Poincaré, 2006.

S. Guerin, J. L. Coulomb, and G. Cauet, Study of the inverse problem resolution quality. Application to low-.eld magnetostatic, COMPEL, vol.24, 2005.
URL : https://hal.archives-ouvertes.fr/hal-00368787

P. Guitard, Automatisation du procédé de modélisation d'actionneurs électromagnétiques", projet de fin d'étude, pp.2011-93

D. C. Hamill, Lumped equivalent circuits of magnetic components: the gyrator-capacitor approach, IEEE Transactions on Power Electronics, vol.8, issue.2, pp.1993-1998
DOI : 10.1109/63.223957

J. C. Hamon, E. Hairer, C. Lubich, and M. Roche, Méthodes et outils de la conception amont pour les systèmes et les microsystèmes", thèse à l'Institut National Polytechnique de ToulouseThe Numerical Solution of Differential-Algebraic Systems by Runge-Kutta Methods, Lecture Notes in Mathematics, 1980.

E. Hairer, C. Lubich, and M. Roche, The numerical solution of differential-algebraic systems by Runge-Kutta methods, Lecture Notes in Mathematics, vol.1409, 1989.
DOI : 10.1007/BFb0093947

E. Hairer and G. Wanner, Solving Ordinary Differential Equations II-Stiff and Differential-Algebraic Problems, 1991.

E. Hairer, S. P. Norsett, and G. Wanner, Solving OrdinaryDifferential Equations I- Nonstiff Problems, 2008.

F. Harshama, M. Tomizuka, and T. Fukuda, Mechatronics - "What Is It, Why, and How?" An editorial, IEEE/ASME Transactions on Mechatronics, vol.1, issue.1, 1996.
DOI : 10.1109/TMECH.1996.7827930

Y. Hervé, VHDL-AMS : Applications et enjeux industriels, 2002.

Y. Hervé, Simple models for complex systems: A-FSM template", Forum on specification and Design Language, pp.2003-2006

Y. Hervé, Virtual prototyping with VHDL-AMS, IEEE International Conference on Industrial Technology, 2003, 2003.
DOI : 10.1109/ICIT.2003.1290753

Y. Hervé, VHDL-AMS : un atout pour la conception système, TAISA, 2002.

Y. Hervé and P. Desgreys, Functional Virtual Prototyping Design Flow and VHDL- AMS, pp.2006-2018

Y. Hervé and P. Desgreys, Design Technology for Heterogeneous Embedded Systems, p.11, 2012.

A. C. Hindmarsh, LSODE and LSODI, two new initial value ordinary differential equations solvers, ACM SIGNUM Newsletter, 1980.

A. C. Hindmarsh, ODEPACK, A Systematized Collection of ODE Solvers, IMACS Transactions on Scientific Computation, vol.1, p.12, 1983.

G. Hummler, Modélisation système d'un actionneur électromagnétique, pp.2012-2021

T. Ibrahim, Contribution au développement de modèles pour l'électronique de puissance en VHDL-AMSStandard Industrial Guideline for MechatronicProduct Design, Thèse, Institut National des Sciences Appliquées de Lyon, 2008.

J. L. Janssen, J. J. Paulides, J. C. Compter, and E. A. Lomonova, Three-Dimensional Analytical Calculation of the Torque Between Permanent Magnets in Magnetic Bearings, IEEE Transactions on Magnetics, vol.46, issue.6, pp.2010-92
DOI : 10.1109/TMAG.2010.2043224

R. B. Jarvis and C. C. Pantelides, DASOLV : a differential algebraic equation solver, 1992.

A. Jardin, Contribution à une méthodologie de dimensionnement des systèmes mécatroniques : anlayse structurelle et couplage à l'optimisation dynamique, thèse Institut National des Sciences Appliquées de Lyon, 2010.

H. John and H. Beverly, Differential Equations : A Dynamical Systems, 1997.

P. Kauffmann, lévitation diamagnétique sur micro aimants : Applications à la micro fluidique digitale et à la biologie, Thèse Institut National Polytechnique de Grenoble, 2009.

P. Kauffmann, V. Haguet, G. Reyne, and B. Delinchant, Efficient multipoles modeling for linear magnetized beads manipulations" manuscript, published in "Scientific and Clinical Applications of Magnetic Carriers, 2009.

D. Konstantas, J. Bourrières, M. Léonard, and N. Boudjlida, Interoperability of enterprise software and applications, 2005.
DOI : 10.1007/1-84628-152-0

URL : https://hal.archives-ouvertes.fr/hal-00356190

R. Kossel, W. Tegethoff, M. Bodmann, and N. Lemke, Simulation of complex systems using Modelica and toll coupling, Modelica Conference, 2006.

E. Kreyszig, Advanced Engineering Mathematics, pp.1972-92

A. Kröner, W. Marquardt, and E. D. Gilles, Computing consistentinitial conditions for differential-algebraic equations, Computers & Chemical Engineering, vol.16, pp.1992-1998

P. Kunkel and V. Mehrmann, Differential-algebraic equations, EMS Textbooks in Mathematics. European Mathematical Society, 2006.
DOI : 10.4171/017

I. Kurtev and K. Berg, Model Driven Architecture based XML Processing Software Engineering Group, Proceedings of the ACM symposium on Document engineering, 2003.

L. Lebensztajn, C. A. Marretto, M. Costa, and J. Coulomb, Kriging: A Useful Tool for Electromagnetic Device Optimization, IEEE Transactions on Magnetics, vol.40, issue.2, pp.2004-2016
DOI : 10.1109/TMAG.2004.824542

M. Lebrun, Simulation et CAO en automatique et mécatronique, p.2012

B. Leimkuhler, L. R. Petzold, and C. W. Gear, Approximation Methods for the Consistent Initialization of Differential-Algebraic Equations, SIAM Journal on Numerical Analysis, vol.28, issue.1, 1991.
DOI : 10.1137/0728011

J. Lygeros, C. Tomlin, and S. Sastry, Hybrid Systems : Modeling, Analysis and Control, 2008.

Q. Li, W. Zhang, and L. Chen, Design for control-a concurrent engineering approach for mechatronic systems design, IEEE/ASME Transactions on Mechatronics, vol.6, issue.2, 2001.
DOI : 10.1109/3516.928731

Z. Li, L. Zheng, and H. Zhang, Modelling and simulation of PDE problems in Modelica, International Journal of Materials and Structural Integrity, vol.3, issue.4, pp.2009-2015
DOI : 10.1504/IJMSI.2009.029339

J. Lienemann, B. R. Evgenii, J. G. Korvink, and F. , MST MEMS compact modelling meets model order reduction: Requirements and benchmarks, Linear Algebra and its Applications, vol.415, pp.2-3, 2006.

H. Lundvall and P. Fritzson, Event Handling in the OpenModelica Compiler and Runtime System, Modelica conferencec, 2005.

D. Magot, Méthodes et outils logiciels d'aide au dimensionnement. application aux composants magnétiques et aux filtres passifs, Thèse de l'Institut National Polytechnique de Grenoble, 2004.

A. Mantooth, A. Francis, Y. Feng, and W. Zheng, Modelling tools built upon the hardware description language foundation, IET Computers & Digital Techniques, 2007.
DOI : 10.1049/iet-cdt:20050213

C. Marin, S. E. Mattsson, and G. Söderlind, Une approche orientée domaine pour la composition de servicesIndex Reduction in Differential-Algebraic Equations Using Dummy Derivatives, thèse Informatique de l'Université Joseph Fourier, 1993.

V. Mazauric, From thermostatistics to Maxwells equations : a variational approach of electromagnetism, IEEE Transactions on Magnetics, vol.40, pp.2004-192

N. Medvidovic and R. N. Taylor, A classification and comparison framework for software architecture description languages, IEEE Transactions on Software Engineering, vol.26, issue.1, pp.2000-2008
DOI : 10.1109/32.825767

URL : https://hal.archives-ouvertes.fr/hal-00444077

G. Meunier, The Finite Element Method for Electromagnetic Modeling, Wiley ISTE, 2008.
DOI : 10.1002/9780470611173

URL : https://hal.archives-ouvertes.fr/hal-00364741

J. Michaelsen and J. Eiden, HumanComfort Modelica-Library Thermal Comfort in Buildings and Mobile Applications, Proceedings of the 7 International Modelica Conference Como, Italy, pp.2009-96
DOI : 10.3384/ecp09430082

Z. Mrcarica, H. Detter, D. Glozic, and V. Litovski, Describing space-continuous models of microelectromechanical devices for behavioral simulation, Proceedings of the conference on European design. Automation, 1996.

D. Niarchos, Magnetic MEMS: key issues and some applications, Sensors and Actuators, vol.109, 2003.

P. V. Nikitin and C. J. Shi, VHDL-AMS based modeling and simulation of mixedtechnology Microsystems: a tutorial, INTEGRATION, the VLSI journal, 2007.

P. V. Nikitin, C. R. Shi, and B. Wan, Modeling partial differential equations in VHDL-AMS [mixed signal systems applications], IEEE International [Systems-on-Chip] SOC Conference, 2003. Proceedings., pp.2003-92
DOI : 10.1109/SOC.2003.1241540

O. Normand, Conception d'un outil général de simulation des systèmes de conversion d'énergie électrique et de leur commande, Thèse de doctorat en génie électrique de l'Institut National Polytechnique de Grenoble, 1992.

K. Nguessan, Optimisation d'un déclencheur par méthode analytique et numérique, Master Recherche de Génie Électrique de L'institut National Polytechnique Grenoble, 2004.

G. Pahl and W. Beitz, Engineering Design: A Systematic Approach, 1996.

C. Pantelides, The Consistent Initialization of Differential-Algebraic Systems, SIAM Journal on Scientific and Statistical Computing, vol.9, issue.2, 1988.
DOI : 10.1137/0909014

M. Perrault, Optimisation d'un déclencheur à noyau plongeur : Internet de l'approche P, 1998.

L. R. Petzold, Automatic Selection of Methods for Solving Stiff and Nonstiff Systems of Ordinary Differential Equations, SIAM Journal on Scientific and Statistical Computing, vol.4, issue.1, 1980.
DOI : 10.1137/0904010

L. R. Petzold, A description of DASSL: A differential algebraic system solver, Scientific Computing, 1983.

P. E. Van-kekenad, D. A. Yuenbe, and L. R. Petzold, DASPK: A new high order and adaptive time-integration technique with applications to mantle convection with strongly temperature-and pressure-dependent rheology, Geophysical & Astrophysical Fluid Dynamics, pp.1995-2006
DOI : 10.1080/03091929508229763

P. Pham-quang, Modélisation magnéto mécanique d'un nano commutateur. Optimisation sous contraintes de fiabilité par dérivation automatique des programmes en Java, thèse de l'Institut National Polytechnique de Grenoble, 2011.

P. Pham-quang and B. Delinchant, Java Automatic Differentiation Tool Using Virtual Operator Overloading, Recent Advances in Algorithmic Differentiation. S. Forth et al, 2012.
DOI : 10.1007/978-3-642-30023-3_22

URL : https://hal.archives-ouvertes.fr/hal-00741404

K. Radhakrishnan and A. C. Hindmarsh, Description and Use of LSODE, the Livermore Solver for Ordinary Differential Equations, 1993.

H. Rakotoarison, Méthode et outil de génération automatique de modèle pour l'optimisation fortement contrainte des microsystèmes magnétiques, Thèse de l, 2007.

H. L. Rakotoarison, J. P. Yonnet, and B. Delinchant, Using Coulombian approach for Modeling Scalar Potential and Magnetic Field of a Permanent Magnet with Radial Polarization, IEEE Transactions on Magnetics, vol.43, 2007.
URL : https://hal.archives-ouvertes.fr/hal-00333210

A. Rezgui, L. Gerbaud, and B. Delinchant, VHDL-AMS to Support DAE-PDE Coupling and Multilevel Modeling, IEEE Transactions on Magnetics, vol.48, issue.2, 2012.
DOI : 10.1109/TMAG.2011.2177248

URL : https://hal.archives-ouvertes.fr/hal-00790089

A. Rezgui, L. Gerbaud, B. Delinchant, R. Barrak, and A. , Unified modelling technique using VHDL-AMS and software components, Electrimacs, vol.2011
URL : https://hal.archives-ouvertes.fr/hal-00600311

H. Rostaing, J. Stepanek, B. Delinchant, J. Delamare, and O. Cugat, Conception, modélisation et prototypage d'un micro-relais bistable magnétique, revue internationale de génie électrique (RIGE), pp.2005-2046

R. Rothfuss, M. Lasa, H. M. Heinkel, and P. Tirigari, Systems Engineering in the Design of Mechatronic Systems, International Journal of Vehicle Design, vol.28, 2002.

L. Saldamli and P. Fritzon, Object oriented modeling with Partial Differential Equation, 2000.

P. Schneider, E. Huck, S. Reitz, S. Parodat1, A. Schneider et al., Modular approach for simulation-based optimization of MEMS, Design, Modeling, and Simulation in Microelectronics, 2000.
DOI : 10.1117/12.405441

H. P. Schöner, Automotive mechatronics, Control Engineering Practice, vol.12, issue.11, 2004.
DOI : 10.1016/j.conengprac.2003.10.004

M. Schlegel, F. Bennini, J. Mehner, G. Herrmann, D. Müller et al., Analyzing and simulation of MEMS in VHDL-AMS based on reduced-order FE models, IEEE Sensors Journal, vol.5, issue.5, 2005.
DOI : 10.1109/JSEN.2004.841445

R. S. Shannon, L. Li, and . Petzold, Introduction to the art and science of simulation Proceedings of the 30th conference on Winter simulation Pages 7?14 ofSoftware and algorithms for sensitivity analysis of large-scale differential algebraic systems, Journal of Computational and Applied Mathematics - Special, 1998.

C. Shi and A. Vachoux, VHDL-AMS design objectives and rationale, Current Issues in Electronic Modeling, 1995.

M. Sida, R. Ahola, and D. Wallner, Bleutooth transceiver design and simulation with VHDL-AMS, 2003.

. G. Sim-72-] and . Simmons, Differential Equations with Applications and Historical Notes, 1972.

G. Sohlenius, Concurrent Engineering, CIRP Annals - Manufacturing Technology, vol.41, issue.2, 1992.
DOI : 10.1016/S0007-8506(07)63251-X

Q. Sun, Étude et conception d'un processeur neuronal analogique très faible consommation Application au pilotage d'un pacemaker de nouvelle génération, Thèse à l, 2011.

C. Szypersky, Component Software ? Beyond Object-Oriented Programming, 1998.

K. Thramboulidis, Model-Integrated Mechatronics???Toward a New Paradigm in the Development of Manufacturing Systems, IEEE Transactions on Industrial Informatics, vol.1, issue.1, 2005.
DOI : 10.1109/TII.2005.844427

M. Tollenaere, Conception de produits mécaniques : méthodes, modèles, outils, 1998.

A. Vachoux, Modélisation de systèmes analogiques et mixtes, Introduction a VHDL- AMS, p.94, 2003.

A. Vladimirescu, The Spice Book, 1994.

A. Van, Mechatronic design, Mechatronics, 2003.

J. Van-amerongen and P. Breedveld, Modelling of physical systems for the design and control of mechatronic systems, Annual Reviews in Control, vol.27, issue.1, 2003.
DOI : 10.1016/S1367-5788(03)00010-5

V. Standard, Design methodology for mechatronic systems, 2004.

J. Verries, Approche pour la conception de systèmes aéronautiques innovants en vue d'optimiser l'architecture application au système portes passagers, Thèse Universite Toulouse III, 2010.

F. Verdiere, A. Rezgui, S. Gaaloul, B. Delinchant, L. Gerbaud et al., Modelica Models Translation into Java Components for Optimization and DAE Solving Using Automatic Differentiation, 2012 UKSim 14th International Conference on Computer Modelling and Simulation
DOI : 10.1109/UKSim.2012.56

URL : https://hal.archives-ouvertes.fr/hal-00688116

L. Wang, W. Shen, H. Xie, J. Neelamkavil, and A. Pardasani, Collaborative conceptual design???state of the art and future trends, Computer-Aided Design, vol.34, issue.13, pp.2002-96
DOI : 10.1016/S0010-4485(01)00157-9

P. Wegner, Interoperability, ACM Computing Surveys, vol.28, issue.1, 1996.
DOI : 10.1145/234313.234424

M. Wetter, A Modelica-based model library for building energy and control systems". Building Simulation, 2009.

P. Wilson, J. Ross, A. Brrown, and A. Rushton, Multiple domain behavioral modelling using VHDL-AMS, Circuits and Systems, vol.5, 2004.

B. Wu and R. E. White, An initialization subroutine for DAEs solvers: DAEIS, Computers & Chemical Engineering, vol.25, issue.2-3, pp.301-311, 2000.
DOI : 10.1016/S0098-1354(00)00655-4

F. Wurtz, Conceptions de la conception pour le génie électrique : de l'approche « Objets ?Savoirs ? Méthodes ? Outil » à l'approche « Systèmes ? Connaissances ? Compétences ? Organisations, HDR, Institut National Polytechnique de Grenoble, 2008.

. Wur-08a-]-f and . Wurtz, Vers de nouvelles approches pour la capitalisation des modèles pour la simulation et l'optimisation : l'expérience du projet DIMOCODE, NUMELEC, pp.2008-2008

B. P. Zeigler, H. Praehofer, and T. G. Kim, Theory of Modeling and Simulation: Integrating Discrete Event and Continuous Complex Dynamic Systems, 2000.

O. C. Zienkiewicz, R. L. Taylor, and J. Zhu, The Finite Element Method: Its Basis and Fundamentals, 2005.

. Enfin, nous avons proposé une architecture pour le portage de modèles d'un formalisme à un autre Elle a été définie et mise en oeuvre plus particulièrement pour des modèles magnétiques réluctants (Reluctool) et des MEMS magnétiques (MacMMems)

. Mots-clés, Prototypage virtuel fonctionnel, modélisation dynamique système, équations différentielles algébriques, VHDL-AMS, composants logiciels ICAr, interopérabilité de modèles et d'outils