Analyze and design feedback control systems — transfer functions, poles/zeros, stability (Routh-Hurwitz), second-order response (natural frequency, damping, overshoot, settling time, rise time), PID control and tuning (Ziegler-Nichols), steady-state error, and Bode/frequency-response basics. Includes a stdlib calculator for stability, response metrics, and PID tuning. Use when the user asks about a control loop, PID tuning, system stability, step response, damping/overshoot, a transfer function, or feedback design.
$npx -y skills add nocetic/flowly --skill control-systemsInstalls into the current project.
Run `npx skills use "https://github.com/nocetic/flowly" --skill "nocetic/flowly/control-systems"` and follow the generated skill instructions now. Read its complete output, redirecting it to a temporary file first if necessary. Resolve relative paths from the supporting-files directory it provides.
Use the skills in "https://github.com/nocetic/flowly" that are relevant to the current task. Run `npx skills add "https://github.com/nocetic/flowly"` and select the relevant skills, then follow their instructions.