Stanford Root

Schedule

Stanford Root

Schedule

AA 254

Deployable Space Structures

UNITS:3
GRADING:Letter (ABCD/NP)
LEVEL:Graduate
GER:—

This course focuses on the design and implementation of spacecraft deployable structures. Students are introduced to the requirements driving the design of large spacecraft structures, various design approaches to realize deployable structures, and modeling and analysis tools for the design of deployable structures. The course introduces articulated structures, thin coilable shell structures, origami membranes, and cable nets. Students analyze the design of flight examples including the ISS roll out solar arrays, James Webb Space Telescope, and many others. Students will design a concept for a deployable spacecraft structure that meets functional, mechanical, and environmental requirements.

Syllabus for selected term:
View Autumn 2026 Syllabus

Sections

1 Term
Laboratory 1Open
ID: 26538
0 / 40 enrolled
DAYS:Monday, Wednesday
TIME:4:30 PM – 5:50 PM
LOCATION:200-303
INSTRUCTOR:
Sakovsky, Maria
3units

AA 254: Deployable Space Structures

3 units · Letter (ABCD/NP)

This course focuses on the design and implementation of spacecraft deployable structures. Students are introduced to the requirements driving the design of large spacecraft structures, various design approaches to realize deployable structures, and modeling and analysis tools for the design of deployable structures. The course introduces articulated structures, thin coilable shell structures, origami membranes, and cable nets. Students analyze the design of flight examples including the ISS roll out solar arrays, James Webb Space Telescope, and many others. Students will design a concept for a deployable spacecraft structure that meets functional, mechanical, and environmental requirements.

Offered in Autumn 2026 at Stanford University.

Autumn 2026 sections

  • Laboratory — Monday Wednesday 4:30 PM – 5:50 PM — 200-303 — Sakovsky, Maria (Graduate)

More AA courses

  • AA 240: Analysis of Structures
  • AA 240B: Analysis of Structures
  • AA 242A: Classical Dynamics
  • AA 244A: Fundamentals of Plasmas I
  • AA 244B: Fundamentals of Plasmas II
  • AA 252: Techniques of Failure Analysis
  • AA 255: Origami Engineering
  • AA 256: Mechanics of Composites
  • AA 257: Structural Health Monitoring
  • AA 261: Building an Aerospace Startup from the Ground Up
  • AA 262: Governing Autonomous and AI Systems in Outer Space
  • AA 272: Global Positioning Systems

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