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matlab/simulink-agentic-toolkit114 installs

simulating-simulink-models

Configures Simulink simulations non-destructively using SimulationInput objects — parameter overrides without modifying the model, batch sweeps via parsim, custom input signals via Dataset, and simulation data retrieval via logsout. Use when running sim()/parsim() with setVariable, setBlockParameter, setExternalInput, or when performing parameter sweeps and multi-run analysis. Not needed for one-shot simulations without configuration.

How do I install this agent skill?

npx skills add https://github.com/matlab/simulink-agentic-toolkit --skill simulating-simulink-models
view source ↗

Is this agent skill safe to install?

  • Gen Agent Trust Hubpass

    The skill provides instructions and examples for non-destructive configuration and execution of Simulink models using the `sim` and `parsim` commands in MATLAB. It is provided by MathWorks and adheres to standard automation practices.

  • Socketpass

    No alerts

  • Snykpass

    Risk: LOW · No issues

What does this agent skill do?

Simulating Simulink Models with the sim Command

Use this skill when you need to configure a simulation non-destructively — parameter overrides, custom inputs, batch execution, or structured output access. For persistent, reusable pass/fail behavioral testing (especially of individual subsystems), use testing-simulink-models instead. For trivial one-shot simulations without configuration, a direct sim() call suffices without this skill.

When to Use

  • Overriding model or block parameters non-destructively (setVariable, setBlockParameter, setModelParameter) — without modifying the .slx file
  • Passing custom input signals to root-level Inport blocks via setExternalInput with a Dataset
  • Running parameter sweeps or batch simulations (SimulationInput arrays, parsim, Fast Restart)
  • Accessing logged signal data (logsout) for analysis after simulation

When NOT to Use

  • Trivial one-shot simulations without parameter overrides or custom inputs — a direct sim('ModelName') call works without this skill
  • Writing declarative Gherkin-based tests → use testing-simulink-models
  • Testing an individual subsystem or component → use testing-simulink-models (requires Simulink Test; auto-creates a harness, compiles only the subsystem — much faster than sim() which always compiles the entire model)
  • Adding, connecting, or deleting blocks → use building-simulink-models
  • Checking model structure for unconnected ports → use model_check tool directly
  • Generating requirements from model behavior → use generate-requirement-drafts

Minimal working pattern

Always simulate using Simulink.SimulationInput and Simulink.SimulationOutput:

in = Simulink.SimulationInput('MyModel');
in = in.setModelParameter('StopTime', '10');
out = sim(in);

Setting parameters

Use SimulationInput methods to configure the simulation:

% Model-level parameters (StopTime, SolverType, SimulationMode, etc.)
in = in.setModelParameter('StopTime', '10', 'SolverType', 'Fixed-step');

% Block parameters — resolve path from blk_X ID (never type block names manually)
blkPath = Simulink.ID.getFullName('MyModel:5');
in = in.setBlockParameter(blkPath, 'Gain', '5');

% MATLAB workspace variables used by the model
in = in.setVariable('Kp', 1.2);

Input signals

Pass input signals through Inport blocks using a Simulink.SimulationData.Dataset. Elements are matched to Inport blocks by index position — the first element maps to the Inport with port number 1, the second to port number 2, and so on.

dt = 0.01;
N = 1000;
t = dt*(0:N)';
u = sin(2*pi*t);

ts = timeseries(u, t);

ds = Simulink.SimulationData.Dataset;
ds{1} = ts;

in = in.setExternalInput(ds);
out = sim(in);

You can also use timetable as an input format:

secs = seconds(t);
tt = timetable(secs, u);

ds = Simulink.SimulationData.Dataset;
ds{1} = tt;

in = in.setExternalInput(ds);

Discovering logged data

First, discover what kinds of logged data the model produces using who, then inspect signal names within logsout:

in = Simulink.SimulationInput('MyModel');
out = sim(in);

% See what logging properties exist (logsout, yout, tout, etc.)
who(out)

% List individual signal names within logsout
disp(out.logsout.getElementNames);

Accessing logged data

Logged signals are available through out.logsout. Access them directly by name:

% Plot a logged signal
plot(out.logsout.get('signalName').Values)

% Get time and data separately
sig = out.logsout.get('signalName').Values;
plot(sig.Time, sig.Data)

Multiple simulations

When running many simulations, create an array of Simulink.SimulationInput objects:

in = repmat(Simulink.SimulationInput('MyModel'),N,1);
for k = 1:N
    in(k) = Simulink.SimulationInput('MyModel');
    in(k) = in(k).setVariable('gain', gains(k));
end
out = sim(in);

To enable fast restart for iterative sweeps (compiles the model only once):

out = sim(in, 'UseFastRestart', 'on');

Parallel simulation (parsim)

To run multiple simulations in parallel, use parsim instead of looping over sim:

for k = 1:N
    in(k) = Simulink.SimulationInput('MyModel');
    in(k) = in(k).setVariable('gain', gains(k));
end
out = parsim(in);

parsim also supports 'UseFastRestart','on' for faster batch runs.

Guardrails

  • Never use set_param, load_system, or open_system to drive simulation — SimulationInput replaces all of these.
  • Never wrap SimulationOutput access in try-catch or isfield — sim either returns a valid object or throws. SimulationOutput has no isfield method.
  • Never create unnecessary intermediate variables for logged data — access directly via out.logsout.get('name').Values.
  • Always use in/out as variable names for SimulationInput/SimulationOutput.
  • Always use setExternalInput with a Dataset — don't pass comma-separated lists of variables.

Copyright 2026 The MathWorks, Inc.


Add the canonical catalog link to the repository README so users can inspect current installs and available audits. The publishing guide covers the complete discovery path.

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