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https://link.springer.com/content/pdf/10.1007%2F978-0-387-35494-1_14.pdf
Kinematics Support for Design and Simulation of Mechatronic Systems Rajarishi Sinha I , Cluistiaan J.J. Paredisl.2 and Pradeep K. Khoslal.2 1 Institute for Complex Engineered Systems, Carnegie Mellon University, Pittsburgh, PA 15213, USA 2Department of Electrical and Computer Engineering, Carnegie Mellon University,Cited by: 8
https://www.researchgate.net/publication/2631954_Kinematics_Support_for_Design_and_Simulation_of_Mechatronic_Systems
Kinematics Support for Design and Simulation of Mechatronic Systems Pahl and Beitz (1996) describe the geometry, the task and the actions taken to realize the task as three aspects of the ...
https://link.springer.com/chapter/10.1007/978-0-387-35494-1_14
Sinha R., Paredis C.J.J., Khosla P.K. (2002) Kinematics Support for Design and Simulation of Mechatronic Systems. In: Cugini U., Wozny M. (eds) From Knowledge Intensive CAD to Knowledge Intensive Engineering. KIC 2000. IFIP — The International Federation for Information Processing, vol 79. Springer, Boston, MACited by: 8
http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.34.4831
They evolve simultaneously through the design process. When the designer makes a change to one aspect of the representation, our framework automatically updates all other aspects impacted by this change and reports inconsistencies. ... {Kinematics Support for Design and Simulation of Mechatronic Systems}, booktitle = ...
http://www.cs.cmu.edu/~paredis/pubs/KIC4-00.pdf
Kinematics Support for Design and Simulation of Mechatronic Systems and F A +F B =0, t A +t B =0 (4) where {through i i across 1 p 2i 3 R i F, t are the port variables for mass i = A,B. In general, the internals of a component can be a behavioral model, or a sub-system
https://www.academia.edu/9287105/Kinematics_Support_for_Design_and_Simulation_of_Mechatronic_Systems
Kinematics Support for Design and Simulation of Mechatronic Systems
https://www.mathworks.com/solutions/mechatronics.html
Developing mechatronic systems requires integrating physical subsystems with control systems and embedded software. Engineers use Model-Based Design to model, simulate, and verify multidisciplinary mechatronic systems from initial development to production.. With MATLAB ®, Simulink ®, and Simscape™, you can:. Understand complex system interactions from algorithm design to plant behavior
https://www.researchgate.net/publication/37406679_System_Dynamics_Modeling_and_Simulation_of_Mechatronic_Systems
Increasing computational capabilities opens for extended use of simulators in the design processes. Even complex systems can now be analyzed at an early stage of the design process and even in ...
https://www.plm.automation.siemens.com/global/en/products/simulation-test/mechanical-system-simulation.html
It also features connection between plant models and control models or code, to support the development of best-in-class mechatronic systems. Simcenter Amesim includes multiple capabilities which enable you to design and optimize the performance, energy efficiency and vibration behavior of …
https://www.mathworks.com/videos/modeling-a-mechatronic-system-68829.html
Using Simulink® Design Optimization™, parameter values of the motor model are modified until the results of the simulation match measured data. Multiple parameters are tuned simultaneously. To ensure rapid convergence of the optimization problem, the sensitivity of the simulation to …
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