DocumentCode :
3119027
Title :
Software defined radio implementing GPS parallel frequency space search acquisition algorithm in real time environment
Author :
Aboud, Ali Haj ; Ramadan, Rana ; AlSharabati, Taher
Author_Institution :
Al-Ahliyya Amman Univ., Amman, Jordan
fYear :
2015
fDate :
17-19 May 2015
Firstpage :
234
Lastpage :
237
Abstract :
In this paper, a parallel frequency space search acquisition algorithm for a GPS (Global Positioning System) receiver is implemented using software defined radio (SDR) technology. The proposed algorithm is implemented and tested using National Instruments MyRio real time software processor platform. The results of the proposed algorithm are confirmed and compared with the parallel code phase search algorithm using different implementation platforms. The parallel frequency search implementation is highly recommended for real time and high speed seamless applications in product development and industry platforms where low cost, low complexity with reliable performance is of dire need. The novelty of this approach stands as no published literature has demonstrated parallel frequency search algorithm as an SDR platform using National Instruments Labview on MyRio real time processor environment. In this research, parallel frequency space acquisition of GPS signals on an NI myRio device is implemented. The parallel frequency acquisition is selected because of its moderate code acquisition complexity and its better resource management compared to parallel code phase algorithm, which is considered a large resource consumer.
Keywords :
Global Positioning System; frequency allocation; microprocessor chips; parallel algorithms; radio receivers; resource allocation; software radio; telecommunication computing; virtual instrumentation; GPS parallel frequency space search acquisition algorithm; GPS receiver; Global Positioning System receiver; Labview; MyRio real time software processor platform; NI myRio device; National Instruments; SDR technology; code acquisition complexity; industry platform; product development platform; real time environment; resource management; software defined radio technology; Doppler effect; Global Positioning System; MATLAB; Satellite broadcasting; Satellites; Signal processing algorithms; Software algorithms;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Information and Communication Technology Research (ICTRC), 2015 International Conference on
Conference_Location :
Abu Dhabi
Type :
conf
DOI :
10.1109/ICTRC.2015.7156465
Filename :
7156465
Link To Document :
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