Cavity Model for a Patch Antenna Embedded with a Hybrid Ground Plane
Fuente:
arXiv
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| Autores principales: | , |
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| Formato: | Preprint |
| Publicado: |
2024
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| Materias: | |
| Acceso en línea: | |
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| _version_ | 1866914985228107776 |
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| author | Kalsi, Rohan Nothofer, Angela |
| author_facet | Kalsi, Rohan Nothofer, Angela |
| contents | An analytical method to characterise the farfield radiation pattern of a patch antenna embedded with a hybrid ground plane is presented using the Cavity Model. The hybrid ground plane is a two-layered structure with a Perfect Magnetic Conductor (PMC) stacked on top of a Perfect Electric Conductor (PEC) separated by a small distance. The model predicts an increase in the antenna's directivity, which is validated through a full-wave simulation model by realising the PMC surface through an Artificial Magnetic Conductor (AMC) which is embedded into the patch antenna's substrate. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2410_03028 |
| institution | arXiv |
| publishDate | 2024 |
| record_format | arxiv |
| spellingShingle | Cavity Model for a Patch Antenna Embedded with a Hybrid Ground Plane Kalsi, Rohan Nothofer, Angela Applied Physics An analytical method to characterise the farfield radiation pattern of a patch antenna embedded with a hybrid ground plane is presented using the Cavity Model. The hybrid ground plane is a two-layered structure with a Perfect Magnetic Conductor (PMC) stacked on top of a Perfect Electric Conductor (PEC) separated by a small distance. The model predicts an increase in the antenna's directivity, which is validated through a full-wave simulation model by realising the PMC surface through an Artificial Magnetic Conductor (AMC) which is embedded into the patch antenna's substrate. |
| title | Cavity Model for a Patch Antenna Embedded with a Hybrid Ground Plane |
| topic | Applied Physics |
| url | https://arxiv.org/abs/2410.03028 |