Abstract
The coupling between apertures or slots in airflow arrays is investigated numerically by means of the method of moments (MoM). Application to shielding enclosure design is of particular interest. Justification for a previously extracted simple empirical design approach for the relation between the number N and size a of apertures, and the shielding effectiveness ∼ Na 3 for an airflow aperture array is given. The coupling between slots is also investigated. The application limit of the empirical design approach is demonstrated.
| Original language | American English |
|---|---|
| Journal | Proceedings of the IEEE International Symposium on Electromagnetic Compatibility (1999, Seattle, WA) |
| Volume | 1 |
| DOIs | |
| State | Published - Aug 1 1999 |
Keywords
- FDTD Method
- Airflow Aperture Arrays
- Aperture Coupling
- Application Limit
- Arrays
- Electromagnetic Shielding
- Empirical Design Approach
- Finite Difference Time-Domain Analysis
- Method Of Moments
- Shielding Effectiveness
- Shielding Enclosure Designs
- Simple Empirical Design Approach
- Slot Coupling
- Antenna Arrays
- Electromagnetic Wave Scattering
- Finite Difference Method
- Integral Equations
- Mathematical Models
- Time Domain Analysis
- Airflow Aperture Array
- Electromagnetic Compatibility
Disciplines
- Electrical and Computer Engineering
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