DocumentCode
117765
Title
SDR — Implementation of low frequency trans-receiver on FPGA
Author
Shahana, K. ; Gupta, R.K. ; Parikh, K.S.
Author_Institution
Satcom Experiments & Oper. Div, Space Applic. Centre, New Delhi, India
fYear
2014
fDate
20-21 Feb. 2014
Firstpage
371
Lastpage
376
Abstract
Usage of Software-Defined Radio (SDR) in digital communication systems can easily cater to sophisticated coding and modulation techniques, to meet the ever-increasing requirements of the wireless communication industry. Future generation of wireless communications will meet the requirements of Software Radio technology as it would provide the state-of-art design to complex radio designs. Software-defined radios are configurable devices in which the components can be reprogrammed to emulate various functionalities like data rate, modulation, filtering etc. Field programmable architectures provide a suitable platform to achieve such run-time reconfigurations of the components of the radio. This project deals with the design and implementation of Low Frequency Trans-Receiver on Spartan-3AN device. System Generator has been used to design and to simulate system level models, and to obtain timing and resource utilization results before implementing the design on actual hardware.
Keywords
field programmable gate arrays; software radio; FPGA; SDR; Spartan-3AN device; coding techniques; digital communication systems; field programmable architectures; low frequency trans-receiver; modulation techniques; software-defined radio; system generator; wireless communication industry; Bandwidth; Demodulation; Field programmable gate arrays; Frequency modulation; Hardware; Phase shift keying; Direct Digital Synthesis (DDS); Low Pass Filter(LPF); Quadrature PhaseShift Keying; Raised Root Cosine (RRC); Xilinx;
fLanguage
English
Publisher
ieee
Conference_Titel
Signal Processing and Integrated Networks (SPIN), 2014 International Conference on
Conference_Location
Noida
Print_ISBN
978-1-4799-2865-1
Type
conf
DOI
10.1109/SPIN.2014.6776981
Filename
6776981
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