Download data/Scripts_Data/Overview/Wheel_Loader_Design_Overview.m from introvoyz041/Wheel-Loader-Simscape: direct link, hf CLI and curl.
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- Download file 3.11 kB
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https://huggingface.co/datasets/introvoyz041/Wheel-Loader-Simscape/resolve/main/data/Scripts_Data/Overview/Wheel_Loader_Design_Overview.m
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hf download hf://datasets/introvoyz041/Wheel-Loader-Simscape/data/Scripts_Data/Overview/Wheel_Loader_Design_Overview.m
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curl -L -o Wheel_Loader_Design_Overview.m https://huggingface.co/datasets/introvoyz041/Wheel-Loader-Simscape/resolve/main/data/Scripts_Data/Overview/Wheel_Loader_Design_Overview.m
3.11 kB
| %% Wheel Loader Design with Simscape(TM) | |
| % | |
| % <<Wheel_Loader_Design_Overview.png>> | |
| % | |
| % This repository contains models and code to help engineers design | |
| % wheel loaders. | |
| % | |
| % * *Early-stage physical design* is supported by calculating | |
| % ratios for geartrains and hydrostatic transmissions to achieve desired speed ranges. | |
| % * *Integrated testing of physical system and controller* is supported by | |
| % a hydromechanical model of the CVT, powertrain, and linkage. | |
| % | |
| % | |
| % Copyright 2023-2026 The MathWorks, Inc. | |
| %% | |
| % *Complete Wheel Loader Model* | |
| % | |
| % # Wheel Loader with Power Split CVT: <matlab:open_system('sm_wheel_loader') Model>, <matlab:web('sm_wheel_loader.html') Documentation> | |
| % | |
| % *CVT Test Models* | |
| % | |
| % # Hydromechanical Power Split CVT: <matlab:open_system('ssc_hydromech_power_split_cvt') Model>, <matlab:web('ssc_hydromech_power_split_cvt.html') Documentation> | |
| % # Hydromechanical Power Split CVT with Engine: <matlab:open_system('ssc_hydromech_power_split_cvt_engine') Model>, <matlab:web('ssc_hydromech_power_split_cvt_engine.html') Documentation> | |
| % # Power Split CVT with Four Speed Ranges (Multibody): <matlab:open_system('sm_cvt_power_split_pg_4range') Model>, <matlab:web('sm_cvt_power_split_pg_4range.html') Documentation> | |
| % # Power Split Planetary Gear (Multibody): <matlab:open_system('sm_cvt_power_split_pg') Model>, <matlab:web('sm_cvt_power_split_pg.html') Documentation> | |
| % | |
| % *Vehicle, Linkage, and Steering Models* | |
| % | |
| % # Wheel Loader Chassis, Drivetrain, and Linkage: <matlab:open_system('sm_wheel_loader_vehicle') Model>, <matlab:web('sm_wheel_loader_vehicle.html') Documentation> | |
| % # Wheel Loader Linkage: <matlab:open_system('sm_wheel_loader_linkage') Model>, <matlab:web('sm_wheel_loader_linkage.html') Documentation> | |
| % # Wheel Loader Steering: <matlab:open_system('sm_wheel_loader_steer') Model>, <matlab:web('sm_wheel_loader_steer.html') Documentation> | |
| % | |
| % *Driveline Test Models* | |
| % | |
| % # Differential Front: <matlab:open_system('sm_wheel_loader_diff_f') Model>, <matlab:web('sm_wheel_loader_diff_f.html') Documentation> | |
| % # Differential Rear: <matlab:open_system('sm_wheel_loader_diff_r') Model>, <matlab:web('sm_wheel_loader_diff_r.html') Documentation> | |
| % # Axle Front: <matlab:open_system('sm_wheel_loader_drive_f') Model>, <matlab:web('sm_wheel_loader_drive_f.html') Documentation> | |
| % # Axle Rear: <matlab:open_system('sm_wheel_loader_drive_r') Model>, <matlab:web('sm_wheel_loader_drive_r.html') Documentation> | |
| % # Driveline Joint: <matlab:open_system('sm_wheel_loader_driveline') Model>, <matlab:web('sm_wheel_loader_driveline.html') Documentation> | |
| % # Planetary Gear Wheel Hub: <matlab:open_system('sm_wheel_loader_planetary_gear') Model>, <matlab:web('sm_wheel_loader_planetary_gear.html') Documentation> | |
| % | |
| % *Workflows* | |
| % | |
| % # Power Split CVT Design: | |
| % <matlab:web('optim_cvt_power_split_design.html') Documentation>, | |
| % <matlab:run('CVT_Calculate_Swash_Control_app_run.m'); MATLAB App> | |
| % # Terrain Definition from STL: <matlab:web('wheel_loader_surface_terrain.html') Documentation> | |
| % # Tire Point Cloud from STL: <matlab:web('wheel_loader_point_cloud_tire.html') Documentation> | |