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Dynamic Systems Engineering

Stage II, Course 5 · 4 credits · 14 weeks · Decomposition and systematic engineering

Course CodeDSE
StageII (Structure)
SequenceCourse 5 of 17
Credits4
PrerequisitesStage I complete
StatusCore Required

Course Purpose

Students learn systematic decomposition — the engineering discipline that turns complex, messy real systems into manageable, formally specifiable components. This course bridges Stage I (thinking about systems) and Stage II (formalizing systems).

By end: Students can take any complex real system, systematically decompose it into components, map relationships, identify interfaces, specify constraints, document assumptions, and iterate to refinement.

Learning Outcomes

  1. Decompose complex systems systematically — philosophy and method
  2. Identify components and interfaces — what's inside, what's outside, what communicates across boundaries
  3. Map relationships and dependencies — how components interact
  4. Understand hierarchical structure — components within components within systems
  5. Specify constraints and trade-offs — what's negotiable, what isn't
  6. Document assumptions explicitly — what the decomposition takes for granted
  7. Iterate and refine decomposition — find the right level of granularity
  8. Connect to formal verification — prepare for mathematical proof that decomposition is valid

Core Concepts

decomposition, component, subsystem, interface, boundary, hierarchy, relationship, dependency, modularity, constraint, trade-off, assumption, specification, refinement

Course Structure (14 weeks)

WeekTopic
1-2Decomposition philosophy — why and how
3-4Component identification and specification
5-6Relationships and interfaces
7-8Causality and directionality
9-10Hierarchical structure and abstraction
11Constraints and trade-offs
12Testing and refinement
13-14Capstone: complete decomposition

Prerequisites for Subsequent Courses

This course provides the foundational engineering method needed for all subsequent Stage II courses, especially Causal Structure & Dynamic Matrices, and for all Stage III network courses.

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