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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.% g& S& g) a O$ ^; u n
Please read the README.txt file to get started. ! V1 D0 d+ [; |To 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.html+ z( [1 Y9 y- Q* c _5 k- x6 d/ ?7 X
To find other physical modeling examples, search for posts with the keyword "physical modeling" # V' ~4 A- h+ a+ `4 Q0 i! W http://www.mathworks.com/matlabcentral/fileexchange/?term=%22physical+modeling%22 ! k8 _& |, s2 YTo learn more about MathWorks Physical Modeling Products, go to: http://www.mathworks.com/physical-modeling/ # O( f' ]% M. }1 [) b$ }
Acknowledgements
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The author wishes to acknowledge the following in the creation of this submission:0 h4 f* D- v; [4 d6 ]4 |
Real-Time Simulation of a Hybrid-Electric Vehicle 5 D: E Q$ x6 [! ~) o3 s7 L
Required Products
SimDriveline , i$ n- v' @- M& L3 d9 xSimElectronics3 G+ n {+ \# f; S" x
SimPowerSystems: w" g) l/ o) i! G
Simscape' k/ y% l$ Z$ t0 J7 z
Stateflow5 F3 B, e( M, b# c
Simulink 5 x& I" r$ o) l