Implementing Mobile Communication System Using FPGA

Global System for Mobile Communication (GSM) is a digital cellular communication network that has been used by most of the countries around the world. GSM mobile phone is used since 1991, and uses variety of error detection and error correction techniques in communication system to improve the...

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Main Author: Goh, Seng How
Format: Monograph
Language:English
Published: Universiti Sains Malaysia 2006
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Online Access:http://eprints.usm.my/58728/1/Implementing%20Mobile%20Communication%20System%20Using%20FPGA_Goh%20Seng%20How.pdf
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spelling my.usm.eprints.58728 http://eprints.usm.my/58728/ Implementing Mobile Communication System Using FPGA Goh, Seng How T Technology TK Electrical Engineering. Electronics. Nuclear Engineering Global System for Mobile Communication (GSM) is a digital cellular communication network that has been used by most of the countries around the world. GSM mobile phone is used since 1991, and uses variety of error detection and error correction techniques in communication system to improve the services’ quality. Thus, a research has been done on six parts of encoder and six parts of decoder in the GSM mobile phone communication system in order to produce chipsets using VHDL. The communication system is important for detecting errors, correcting and protecting speech data during transmission and receiving. Xilinx ISE 7.1i software in VHDL description is used as a tool in the research to enable each part of encoder and decoder to be modeled synthesized, simulated and implemented before downloaded on the FPGA device Spartan3 XC3S1500E-FG676. Furthermore, the FPGA device is capable to be programmed many times using different design. In this research, the simulation result for each part of encoder and decoder shows that 260 until 592 speech bits are gained in 20 ms based on the GSM standard. The download result is also similar to the simulation result for each part of encoder and decoder. After the download process, the chipsets of GSM mobile phone communication system are produced. Universiti Sains Malaysia 2006-05-01 Monograph NonPeerReviewed application/pdf en http://eprints.usm.my/58728/1/Implementing%20Mobile%20Communication%20System%20Using%20FPGA_Goh%20Seng%20How.pdf Goh, Seng How (2006) Implementing Mobile Communication System Using FPGA. Project Report. Universiti Sains Malaysia, Pusat Pengajian Kejuruteraan Elektrik dan Elektronik. (Submitted)
institution Universiti Sains Malaysia
building Hamzah Sendut Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Sains Malaysia
content_source USM Institutional Repository
url_provider http://eprints.usm.my/
language English
topic T Technology
TK Electrical Engineering. Electronics. Nuclear Engineering
spellingShingle T Technology
TK Electrical Engineering. Electronics. Nuclear Engineering
Goh, Seng How
Implementing Mobile Communication System Using FPGA
description Global System for Mobile Communication (GSM) is a digital cellular communication network that has been used by most of the countries around the world. GSM mobile phone is used since 1991, and uses variety of error detection and error correction techniques in communication system to improve the services’ quality. Thus, a research has been done on six parts of encoder and six parts of decoder in the GSM mobile phone communication system in order to produce chipsets using VHDL. The communication system is important for detecting errors, correcting and protecting speech data during transmission and receiving. Xilinx ISE 7.1i software in VHDL description is used as a tool in the research to enable each part of encoder and decoder to be modeled synthesized, simulated and implemented before downloaded on the FPGA device Spartan3 XC3S1500E-FG676. Furthermore, the FPGA device is capable to be programmed many times using different design. In this research, the simulation result for each part of encoder and decoder shows that 260 until 592 speech bits are gained in 20 ms based on the GSM standard. The download result is also similar to the simulation result for each part of encoder and decoder. After the download process, the chipsets of GSM mobile phone communication system are produced.
format Monograph
author Goh, Seng How
author_facet Goh, Seng How
author_sort Goh, Seng How
title Implementing Mobile Communication System Using FPGA
title_short Implementing Mobile Communication System Using FPGA
title_full Implementing Mobile Communication System Using FPGA
title_fullStr Implementing Mobile Communication System Using FPGA
title_full_unstemmed Implementing Mobile Communication System Using FPGA
title_sort implementing mobile communication system using fpga
publisher Universiti Sains Malaysia
publishDate 2006
url http://eprints.usm.my/58728/1/Implementing%20Mobile%20Communication%20System%20Using%20FPGA_Goh%20Seng%20How.pdf
http://eprints.usm.my/58728/
_version_ 1768007922946670592
score 13.214268