Instrumentation and control numericals
Budget: ₹400 – ₹750 INR
I need a sharp, technically-minded engineer to work through a control-system modelling task that centres on three deliverables:
• Deriving the complete transfer function of the system in question, showing every algebraic step so I can follow the logic.
• Translating that model into a clear, fully labelled block diagram.
• Converting the result into its state-space representation, including the state transition matrix.
All three elements are required—deriving the transfer function, creating the block diagram, and constructing the state transfer matrix—so I can cross-check each form against the others. Please use standard control-engineering notation (Laplace domain, A-B-C-D matrices, etc.) and, if you rely on MATLAB, Simulink, or similar tools, note any code or scripts you generate so I can reproduce the results on my end.
Accuracy and clarity matter more than volume. If you spot simplifications, stability issues, or insight that should be highlighted for a process-control context, weave that into the explanation. A concise PDF report plus any native files (MATLAB .m, Simulink model, or equivalent) will wrap it up neatly for me.
• Deriving the complete transfer function of the system in question, showing every algebraic step so I can follow the logic.
• Translating that model into a clear, fully labelled block diagram.
• Converting the result into its state-space representation, including the state transition matrix.
All three elements are required—deriving the transfer function, creating the block diagram, and constructing the state transfer matrix—so I can cross-check each form against the others. Please use standard control-engineering notation (Laplace domain, A-B-C-D matrices, etc.) and, if you rely on MATLAB, Simulink, or similar tools, note any code or scripts you generate so I can reproduce the results on my end.
Accuracy and clarity matter more than volume. If you spot simplifications, stability issues, or insight that should be highlighted for a process-control context, weave that into the explanation. A concise PDF report plus any native files (MATLAB .m, Simulink model, or equivalent) will wrap it up neatly for me.