A method to determine the sweep repetition frequency of the INDERA radar
DDS and ADC are the components of an FMCW radar that can not be separated. DDS serves to rapidly synthesize an analog signal at a specific frequency, whereas ADC converts analog into digital signals for further processing. Both DDS and ADC required a synchronization through the Sweep Repetition Freq...
Váldodahkkit: | , , |
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Materiálatiipa: | Proceeding Paper |
Giella: | English |
Almmustuhtton: |
2009
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Fáttát: | |
Liŋkkat: | http://irep.iium.edu.my/3062/1/20.A_Method_to_Determine_the_Sweep_Repetition_Frequency_of_the_INDERA_Radar.pdf |
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author | Winarko, O. D. Sediono, Wahju Lestari, A. A. |
author_facet | Winarko, O. D. Sediono, Wahju Lestari, A. A. |
author_sort | Winarko, O. D. |
collection | IIUM |
description | DDS and ADC are the components of an FMCW radar that can not be separated. DDS serves to rapidly synthesize an analog signal at a specific frequency, whereas ADC converts analog into digital signals for further processing. Both DDS and ADC required a synchronization through the Sweep Repetition Frequency (SRF) to determine the frequency tuning word, including the rising sweep ramp rate and the rising delta frequency tuning word on DDS side and the frame size on ADC side. The main purpose of this synchronization is to minimize errors when DDS is synthesizing signal and ADC is starting to acquire signal. |
first_indexed | 2024-03-05T22:31:55Z |
format | Proceeding Paper |
id | oai:generic.eprints.org:3062 |
institution | International Islamic University Malaysia |
language | English |
last_indexed | 2024-03-05T22:31:55Z |
publishDate | 2009 |
record_format | dspace |
spelling | oai:generic.eprints.org:30622019-09-10T01:57:19Z http://irep.iium.edu.my/3062/ A method to determine the sweep repetition frequency of the INDERA radar Winarko, O. D. Sediono, Wahju Lestari, A. A. TK5101 Telecommunication. Including telegraphy, radio, radar, television DDS and ADC are the components of an FMCW radar that can not be separated. DDS serves to rapidly synthesize an analog signal at a specific frequency, whereas ADC converts analog into digital signals for further processing. Both DDS and ADC required a synchronization through the Sweep Repetition Frequency (SRF) to determine the frequency tuning word, including the rising sweep ramp rate and the rising delta frequency tuning word on DDS side and the frame size on ADC side. The main purpose of this synchronization is to minimize errors when DDS is synthesizing signal and ADC is starting to acquire signal. 2009 Proceeding Paper PeerReviewed application/pdf en http://irep.iium.edu.my/3062/1/20.A_Method_to_Determine_the_Sweep_Repetition_Frequency_of_the_INDERA_Radar.pdf Winarko, O. D. and Sediono, Wahju and Lestari, A. A. (2009) A method to determine the sweep repetition frequency of the INDERA radar. In: The 5th International Conference on Telematics System, Services, and Applications (TSSA) 2009, 20 - 21 November 2009, Bandung. |
spellingShingle | TK5101 Telecommunication. Including telegraphy, radio, radar, television Winarko, O. D. Sediono, Wahju Lestari, A. A. A method to determine the sweep repetition frequency of the INDERA radar |
title | A method to determine the sweep repetition frequency of the INDERA radar |
title_full | A method to determine the sweep repetition frequency of the INDERA radar |
title_fullStr | A method to determine the sweep repetition frequency of the INDERA radar |
title_full_unstemmed | A method to determine the sweep repetition frequency of the INDERA radar |
title_short | A method to determine the sweep repetition frequency of the INDERA radar |
title_sort | method to determine the sweep repetition frequency of the indera radar |
topic | TK5101 Telecommunication. Including telegraphy, radio, radar, television |
url | http://irep.iium.edu.my/3062/1/20.A_Method_to_Determine_the_Sweep_Repetition_Frequency_of_the_INDERA_Radar.pdf |
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