4 l# ?6 N1 F& s$ m/ W9 F) I8 Q8 OThis 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.1 k6 |1 |( B; L5 X9 s& s4 g
Please read the README.txt file to get started.1 [% {2 U4 \ f2 A4 |) X* k
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 ( S' K$ |# R6 t, W3 ]8 I$ @To find other physical modeling examples, search for posts with the keyword "physical modeling" $ R& I5 {1 ^$ Ohttp://www.mathworks.com/matlabcentral/fileexchange/?term=%22physical+modeling%22/ I- O5 P7 A! I9 Q: ]0 T
To learn more about MathWorks Physical Modeling Products, go to: http://www.mathworks.com/physical-modeling/# J$ f M' x9 `+ |
Acknowledgements
' p6 O" b0 p: W' oThe author wishes to acknowledge the following in the creation of this submission: 7 s1 o* f# { q! PReal-Time Simulation of a Hybrid-Electric Vehicle + @% s" q: m/ b: q' K0 S# s
Required Products
SimDriveline( q) x: {# l% d' f5 X
SimElectronics& n/ [( o& F9 r& _9 x0 b
SimPowerSystems 2 Q7 E0 h$ h$ ^. w# Q8 Y, f1 Z; E3 LSimscape: s2 T, Z, H5 w S+ _+ d
Stateflow. Y- {" x6 u/ ~# r& r
Simulink; _0 |4 r' z/ \* U# Q: @2 g2 B