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This file contains a hybrid-electric vehicle model built using Simscape, SimElectronics, SimDriveline, and SimPowerSystems that can be configured for system-level tests or power quality analyses. Model variants for the electrical, battery, and vehicle dynamics systems can be selected using configurable subsystems. A battery model created with the Simscape language is incorporated into the model. Supervisory logic is implemented with Stateflow. This model can be configured for hardware-in-the-loop testing. ' @: ]: v6 b3 B8 m- h( F, yPlease read the README.txt file to get started. ! y+ O7 {" n2 u$ {0 ITo see the different variants included in this model, please watch the webinar, “Hybrid Electric Vehicle Modeling and Simulation“ http://www.mathworks.com/company/events/webinars/wbnr50682.html1 b4 l6 g" s+ M3 p) Y
To find other physical modeling examples, search for posts with the keyword "physical modeling" ' m2 s6 d5 v7 o http://www.mathworks.com/matlabcentral/fileexchange/?term=%22physical+modeling%22/ m: H0 v) I2 P1 K2 r; r
To learn more about MathWorks Physical Modeling Products, go to: http://www.mathworks.com/physical-modeling/" W) R7 _3 {2 h" D+ l2 y
Acknowledgements
. L' A- l$ ?0 u" s* g( kThe author wishes to acknowledge the following in the creation of this submission: $ o" y r# O; D. m# tReal-Time Simulation of a Hybrid-Electric Vehicle ) ~( v0 f$ F* H, b# f
Required Products
SimDriveline & n. u5 y! J+ E' jSimElectronics " h+ @ D; `, u+ ]6 f% s" nSimPowerSystems3 d( U5 N: z, ^ g% c
Simscape6 ~( Q+ E6 y6 O5 e% ?
Stateflow % L v5 ~# x) G cSimulink- S% o2 N+ G# y) E+ m( D