H. M. Paynter and P. Briggs, Analysis and design of engineering systems: class notes for M.I.T. course 2.751, M.I.T. Press, 1961.

M. Yadav, P. Malhotra, L. Vig, K. Sriram, and G. Shroff, ODE -Augmented Training Improves Anomaly Detection in Sensor Data from Machines, NIPS Time-Ser. Workshop -2015, 2015.

T. Q. Chen, Y. Rubanova, J. Bettencourt, and D. Duvenaud, Neural Ordinary Differential Equations, pp.6571-6583, 2018.

Y. Yu, H. Yao, and Y. Liu, Aircraft dynamics simulation using a novel physics-based learning method, Aerosp. Sci. Technol, vol.87, pp.254-264, 2019.

P. J. Werbos, Backpropagation through time: what it does and how to do it, Proc. IEEE, vol.78, pp.1550-1560, 1990.

B. H. Wilson and J. L. Stein, An Algorithm for Obtaining Proper Models of Distributed and Discrete Systems, J. Dyn. Syst. Meas. Control, vol.117, pp.534-540, 1995.

T. Ersal, H. K. Fathy, D. G. Rideout, L. S. Louca, and J. L. Stein, A Review of Proper Modeling Techniques, J. Dyn. Syst. Meas. Control, vol.130, pp.61008-061008, 2008.

T. , Realization-Preserving Simplification and Reduction of Dynamic System Models at the Graph Level, 2007.

T. Ersal, H. K. Fathy, and J. L. Stein, Structural simplification of modular bond-graph models based on junction inactivity, Simul. Model. Pract. Theory, vol.17, pp.175-196, 2009.

G. E. Hinton and R. R. Salakhutdinov, Reducing the Dimensionality of Data with Neural Networks, Science, vol.313, pp.504-507, 2006.

K. Lee and K. T. Carlberg, Model reduction of dynamical systems on nonlinear manifolds using deep convolutional autoencoders, J. Comput. Phys, vol.404, p.108973, 2020.

K. Seo, Z. Fan, J. Hu, E. D. Goodman, and R. C. Rosenberg, Toward a unified and automated design methodology for multi-domain dynamic systems using bond graphs and genetic programming, Mechatronics, vol.13, issue.03, pp.6-6, 2003.

A. Pirvu, G. Dauphin-tanguy, and P. Kubiak, Automatic System for Bond Graph Model Adaptation-Application to an Electro-Hydrostatic Actuator, Proc. 2007 Int. Conf. Bond Graph Model. Simul, pp.35-41, 2007.

D. L. Margolis and G. E. Young, Reduction of models of large scale lumped structures using normal modes and bond graphs, J. Frankl. Inst, vol.304, pp.90107-90114, 1977.

L. S. Louca, D. G. Rideout, T. Ersal, and J. L. Stein, Energy-Based Bond Graph Model Reduction, Bond Graph Model. Eng. Syst, pp.53-103, 2011.

S. M. Vukazich, K. D. Mish, and K. M. Romstad, Nonlinear Dynamic Response of Frames Using Lanczos Modal Analysis, J. Struct. Eng, vol.122, p.12, 1418.

L. S. Louca and J. L. Stein, Ideal physical element representation from reduced bond graphs, Proc. Inst. Mech. Eng. Part J. Syst. Control Eng, vol.216, pp.73-83, 2002.

L. S. Louca and B. U. Yildir, Modelling and reduction techniques for studies of integrated hybrid vehicle systems, Math. Comput. Model. Dyn. Syst, vol.12, pp.203-218, 2006.

S. Ayasun, C. O. Nwankpa, and H. G. Kwatny, Computation of singular and singularity induced bifurcation points of differential-algebraic power system model, IEEE Trans. Circuits Syst. Regul. Pap, vol.51, pp.1525-1538, 2004.

P. J. Rabier and W. C. Rheinboldt, Theoretical and numerical analysis of differential-algebraic equations, Handb. Numer. Anal, vol.8, pp.183-540, 2002.

M. Barrault, Y. Maday, N. C. Nguyen, and A. T. Patera, An 'empirical interpolation' method: application to efficient reduced-basis discretization of partial differential equations, Comptes Rendus Math, vol.339, pp.667-672, 2004.
URL : https://hal.archives-ouvertes.fr/hal-00021702

,

M. Abbes, A. Farhat, A. Mami, and G. Dauphin-tanguy, Pseudo bond graph model of coupled heat and mass transfers in a plastic tunnel greenhouse, Simul. Model. Pract. Theory, vol.18, pp.1327-1341, 2010.
URL : https://hal.archives-ouvertes.fr/hal-00758180

S. Chaturantabut and D. C. Sorensen, Discrete Empirical Interpolation for nonlinear model reduction, Proc. IEEE Conf. Decis. Control, pp.4316-4321, 2009.

, Worldwide Harmonised Light Vehicles Test Procedure, Wikipedia, 2019.

M. Tutuianu, P. Bonnel, B. Ciuffo, T. Haniu, N. Ichikawa et al., Development of the World-wide harmonized Light duty Test Cycle (WLTC) and a possible pathway for its introduction in the European legislation, Transp. Res. Part D: Transp. Environ, vol.40, pp.61-75, 2015.