REAL TIME WEATHER RADAR SIGNAL AND DATA PROCESSING SYSTEM USING PARALLEL AND PIPELINING COMPUTATION TECHNIQUES

Weather radar is used to detect precipitation, calculate its speed, and predict its type (rain, snow, ice, and so on). Graphics Processing Units (GPU) can be used for radar data processing at the signal processing and data processing stages. This is necessary because the processed radar data is larg...

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Bibliographic Details
Main Author: Satria Perdana, Riza
Format: Dissertations
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/75278
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:75278
spelling id-itb.:752782023-07-26T11:38:30ZREAL TIME WEATHER RADAR SIGNAL AND DATA PROCESSING SYSTEM USING PARALLEL AND PIPELINING COMPUTATION TECHNIQUES Satria Perdana, Riza Indonesia Dissertations weather radar; radar signal processing; radar data processing; parallel computing; pipelining computing; graphics processing unit (GPU); CUDA; CUDA streams; INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/75278 Weather radar is used to detect precipitation, calculate its speed, and predict its type (rain, snow, ice, and so on). Graphics Processing Units (GPU) can be used for radar data processing at the signal processing and data processing stages. This is necessary because the processed radar data is large in size and the computational process allows it to be parallelized. In this research, a signal processing system and weather radar data are developed in parallel using the GPU and using a pipeline technique so that the output products (both basic products such as reflectivity and Doppler speed, as well as derivative products such as CAPPI) can be produced in real time. If the weather radar output product can be generated in real time then the next analysis process (performed by weather experts) is expected to be faster and can be used for a wider purpose. In this research, a parallel weather radar signal processing algorithm has been created and has been implemented into the CUDA platform and its performance is compared to the serial version on the CPU. Furthermore, further optimization of the weather radar signal processing algorithm has been carried out in parallel with a number of techniques obtained from the literature. The algorithm was implemented into the CUDA platform and its performance was compared to an earlier version of the weather radar signal processing algorithm. In the final stage of this research, weather radar data processing has been carried out in the form of a scan volume matrix using the pipeline technique. By using this technique, the derivative output product of this system can be generated in real time. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description Weather radar is used to detect precipitation, calculate its speed, and predict its type (rain, snow, ice, and so on). Graphics Processing Units (GPU) can be used for radar data processing at the signal processing and data processing stages. This is necessary because the processed radar data is large in size and the computational process allows it to be parallelized. In this research, a signal processing system and weather radar data are developed in parallel using the GPU and using a pipeline technique so that the output products (both basic products such as reflectivity and Doppler speed, as well as derivative products such as CAPPI) can be produced in real time. If the weather radar output product can be generated in real time then the next analysis process (performed by weather experts) is expected to be faster and can be used for a wider purpose. In this research, a parallel weather radar signal processing algorithm has been created and has been implemented into the CUDA platform and its performance is compared to the serial version on the CPU. Furthermore, further optimization of the weather radar signal processing algorithm has been carried out in parallel with a number of techniques obtained from the literature. The algorithm was implemented into the CUDA platform and its performance was compared to an earlier version of the weather radar signal processing algorithm. In the final stage of this research, weather radar data processing has been carried out in the form of a scan volume matrix using the pipeline technique. By using this technique, the derivative output product of this system can be generated in real time.
format Dissertations
author Satria Perdana, Riza
spellingShingle Satria Perdana, Riza
REAL TIME WEATHER RADAR SIGNAL AND DATA PROCESSING SYSTEM USING PARALLEL AND PIPELINING COMPUTATION TECHNIQUES
author_facet Satria Perdana, Riza
author_sort Satria Perdana, Riza
title REAL TIME WEATHER RADAR SIGNAL AND DATA PROCESSING SYSTEM USING PARALLEL AND PIPELINING COMPUTATION TECHNIQUES
title_short REAL TIME WEATHER RADAR SIGNAL AND DATA PROCESSING SYSTEM USING PARALLEL AND PIPELINING COMPUTATION TECHNIQUES
title_full REAL TIME WEATHER RADAR SIGNAL AND DATA PROCESSING SYSTEM USING PARALLEL AND PIPELINING COMPUTATION TECHNIQUES
title_fullStr REAL TIME WEATHER RADAR SIGNAL AND DATA PROCESSING SYSTEM USING PARALLEL AND PIPELINING COMPUTATION TECHNIQUES
title_full_unstemmed REAL TIME WEATHER RADAR SIGNAL AND DATA PROCESSING SYSTEM USING PARALLEL AND PIPELINING COMPUTATION TECHNIQUES
title_sort real time weather radar signal and data processing system using parallel and pipelining computation techniques
url https://digilib.itb.ac.id/gdl/view/75278
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