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by Pierre Saguet
Numerical Analysis in Electromagnetics: The TLM Method
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Introduction
Chapter 1: Basis of the TLM Method: the 2D TLM Method
1.1. Historical introduction
1.2. 2D simulation
1.3. The TLM process
Chapter 2: 3D Nodes
2.1. Historical development
2.2. The generalized condensed node [TRE 95b]
2.3. Time step
2.4. Dispersion of 3D nodes
2.5. Absorbing walls
2.6. Orthogonal curvilinear mesh [YOU 08]
2.7. Non-Cartesian nodes
Chapter 3: Introduction of Discrete Elements and Thin Wires in the TLM Method
3.1. Introduction of discrete elements [BIS 99]
3.2. Introduction of thin wires [LAR 06]
Chapter 4: The TLM Method in Matrix Form and the Z Transform
4.1. Introduction
4.2. Matrix form of Maxwell’s equations
4.3. Cubic mesh normalized Maxwell’s equations
4.4. The propagation process
4.5. Wave-matter interaction
4.6. The normalized parallelepipedic mesh Maxwell’s equations [LOU 04]
4.7. Application example: plasma modeling [MOU 06]
4.8. Conclusion
APPENDICES
Appendix A. Development of Maxwell’s Equations using the Z Transform with a Variable Mesh
Appendix B. Treatment of Plasma using the Z Transform for the TLM Method
Bibliography
Index
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