Revealing Order in Complex Systems through Graph Representations Dr. Offer Shai Department of...

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Revealing Order in Complex Systems through Graph Representations Dr. Offer Shai Department of Mechanics, Materials and Systems Faculty of Engineering Tel-Aviv University
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Page 1: Revealing Order in Complex Systems through Graph Representations Dr. Offer Shai Department of Mechanics, Materials and Systems Faculty of Engineering Tel-Aviv.

Revealing Order in Complex Systems through Graph

Representations

Dr. Offer Shai Department of Mechanics, Materials and Systems

Faculty of EngineeringTel-Aviv University

Page 2: Revealing Order in Complex Systems through Graph Representations Dr. Offer Shai Department of Mechanics, Materials and Systems Faculty of Engineering Tel-Aviv.

Outline of the talk

• The methodology will be explained upon the subject of topological rigidity.

• Applications of topological rigidity in structures, mechanisms, drugs design , geometric constraint systems in CAD, and more.

• Decomposition of graphs of arbitrary topological structure into atomic sub-structures (Assur groups).

• Novel method for generating these atomic sub-structures.

• Canonical form of all the atomic structures – employing only two production rules.

• Challenges.

Page 3: Revealing Order in Complex Systems through Graph Representations Dr. Offer Shai Department of Mechanics, Materials and Systems Faculty of Engineering Tel-Aviv.

Checking topological rigidity

Framework is said to be rigid if no motions, except for trivial, can be assigned to its vertices.

Rigid framework Non-rigid framework

Page 4: Revealing Order in Complex Systems through Graph Representations Dr. Offer Shai Department of Mechanics, Materials and Systems Faculty of Engineering Tel-Aviv.

Application of topological rigidity for checking structural stability

Page 5: Revealing Order in Complex Systems through Graph Representations Dr. Offer Shai Department of Mechanics, Materials and Systems Faculty of Engineering Tel-Aviv.

Application of topological rigidity for development of medications

Page 6: Revealing Order in Complex Systems through Graph Representations Dr. Offer Shai Department of Mechanics, Materials and Systems Faculty of Engineering Tel-Aviv.

Application of topological rigidity for checking validity of geometric

constraints

Page 7: Revealing Order in Complex Systems through Graph Representations Dr. Offer Shai Department of Mechanics, Materials and Systems Faculty of Engineering Tel-Aviv.

Application of topological rigidity for checking the mobility of mechanisms

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Page 8: Revealing Order in Complex Systems through Graph Representations Dr. Offer Shai Department of Mechanics, Materials and Systems Faculty of Engineering Tel-Aviv.

It was found that there is a canonical form underlying all possible rigid structures.

Any rigid structure can be decomposed into basic building blocks called Assur groups

Page 9: Revealing Order in Complex Systems through Graph Representations Dr. Offer Shai Department of Mechanics, Materials and Systems Faculty of Engineering Tel-Aviv.
Page 10: Revealing Order in Complex Systems through Graph Representations Dr. Offer Shai Department of Mechanics, Materials and Systems Faculty of Engineering Tel-Aviv.

Hierarchic Order of Assur Groups

Page 11: Revealing Order in Complex Systems through Graph Representations Dr. Offer Shai Department of Mechanics, Materials and Systems Faculty of Engineering Tel-Aviv.

Hierarchic Order of Assur Groups

Page 12: Revealing Order in Complex Systems through Graph Representations Dr. Offer Shai Department of Mechanics, Materials and Systems Faculty of Engineering Tel-Aviv.

Challenges

• Finding and implementing applications of topological rigidity in additional fields of complex engineering systems.

• Applying the methodology for revealing additional cases of order in complex system domains.