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← Dynamic Systems Engineering Foundations · Semester 1, Week 6

Feedback, Control, and Cybernetics

Theme

A system cannot remain effective without feedback. This week introduces cybernetics as the study of communication, regulation, and control in dynamic systems. Students learn how systems maintain stability, adapt to change, and correct errors through feedback mechanisms. The emphasis is on understanding why feedback is necessary and how it enables learning and adaptation.

Learning Objectives

By the end of this week, students should be able to:

Core Vocabulary

Feedback · Positive Feedback · Negative Feedback · Controller · Sensor · Actuator · Error Signal · Set Point · Regulation · Adaptation · Essential Variable · Cybernetics

Key Concepts

What Is Feedback?
Feedback is information about the current state of a system that is used to influence future behavior. Without feedback, a system cannot determine whether it is achieving its intended purpose.
Positive Feedback
Positive feedback amplifies change. Examples include population growth, viral social media trends, and financial bubbles. Positive feedback promotes rapid change but can become unstable if not balanced.
Negative Feedback
Negative feedback reduces error and stabilizes a system. Examples include a thermostat regulating room temperature, cruise control maintaining vehicle speed, and the human body's regulation of temperature. Negative feedback supports stability and reliable performance.
Essential Variables
Every dynamic system has variables that must remain within acceptable limits to continue functioning. Students should identify which variables are essential, what disturbances threaten them, and what feedback mechanisms regulate them.
Components of a Control System
Every feedback system contains: a desired state or goal, sensors that observe the current state, a controller that compares the current state to the desired state, actuators that change system behavior, and feedback that reports the results.

Anchor Example — Thermostat

Demonstrates closed-loop control and negative feedback.

Anchor Example — Human Learning

Student performance provides feedback that guides changes in study strategies and instruction.

Anchor Example — AI Assistant

User responses provide feedback that helps refine explanations and identify misunderstandings.

AI Laboratory

Choose a familiar system and ask the AI to identify: the desired state, sensors, controllers, actuators, feedback loops, and essential variables. Evaluate whether the AI's model is complete and whether any important feedback pathways are missing.

Assignment

Select a dynamic system and document: system purpose, desired state, essential variables, sensors, controllers, actuators, positive feedback loops, negative feedback loops, and potential failure modes if feedback is delayed or absent.

End-of-Week Competency

Students can identify and analyze feedback structures, explain how systems regulate themselves, and recognize the role of cybernetics in adaptation and control.

Next: Week 7 — Knowledge Engineering: Building Reliable Knowledge Systems.