HF antenna design
This is a final year project report on the designing of a high frequency antenna. Design should be of a reasonable size and height as the final implementation would be on top of a structure. Certain criterions on radiation pattern and bandwidth must also be met. First, a bowtie design was exp...
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sg-ntu-dr.10356-534032023-07-07T16:26:05Z HF antenna design Wan, William Lee Yee Hui School of Electrical and Electronic Engineering DRNTU::Engineering::Electrical and electronic engineering::Antennas, wave guides, microwaves, radar, radio This is a final year project report on the designing of a high frequency antenna. Design should be of a reasonable size and height as the final implementation would be on top of a structure. Certain criterions on radiation pattern and bandwidth must also be met. First, a bowtie design was explored. Simulations were done on 2 simulators, HFSS and 4NEC-2 to verify the results and finalize the design. The final design was a bowtie shaped antenna that was constructed using wires instead of metal patches to maintain physical and financial practicality. Having finalized the design, a detailed study was done on a simple dipole to test the effects a passive or active reflector have on the radiation pattern and input impedance of the dipole. To ensure that the study is a good representation for antennas working in the high frequency range, simulations were done on a 6m dipole and a 15m dipole. Variations were made to the dipole height, reflector height, reflector length and phase of an active dipole. Bachelor of Engineering 2013-06-03T04:03:32Z 2013-06-03T04:03:32Z 2013 2013 Final Year Project (FYP) http://hdl.handle.net/10356/53403 en Nanyang Technological University 69 p. application/pdf |
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DRNTU::Engineering::Electrical and electronic engineering::Antennas, wave guides, microwaves, radar, radio Wan, William HF antenna design |
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This is a final year project report on the designing of a high frequency antenna. Design should be of a reasonable size and height as the final implementation would be on top of a structure. Certain criterions on radiation pattern and bandwidth must also be met.
First, a bowtie design was explored. Simulations were done on 2 simulators, HFSS and 4NEC-2 to verify the results and finalize the design. The final design was a bowtie shaped antenna that was constructed using wires instead of metal patches to maintain physical and financial practicality.
Having finalized the design, a detailed study was done on a simple dipole to test the effects a passive or active reflector have on the radiation pattern and input impedance of the dipole. To ensure that the study is a good representation for antennas working in the high frequency range, simulations were done on a 6m dipole and a 15m dipole. Variations were made to the dipole height, reflector height, reflector length and phase of an active dipole. |
author2 |
Lee Yee Hui |
author_facet |
Lee Yee Hui Wan, William |
format |
Final Year Project |
author |
Wan, William |
author_sort |
Wan, William |
title |
HF antenna design |
title_short |
HF antenna design |
title_full |
HF antenna design |
title_fullStr |
HF antenna design |
title_full_unstemmed |
HF antenna design |
title_sort |
hf antenna design |
publishDate |
2013 |
url |
http://hdl.handle.net/10356/53403 |
_version_ |
1772828356597776384 |