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Modeling and Simulation of a Non-Coherent Frequency Shift Keying Transceiver Using a Field Programmable Gate Array (FPGA)

Authors: Konstantinos Voskakis; NAVAL POSTGRADUATE SCHOOL MONTEREY CA
Abstract:
In this thesis, the principals of Software Defined Radio are demonstrated by implementing a Binary Frequency Shift Keying (BFSK) receiver-transmitter in a Field Programmable Gate Array (FPGA). After introducing the theory behind the Non- Coherent BFSK demodulation implemented at the receiver, the design of transmitter and receiver is illustrated. The design environment of choice is Mathworks Simulink and Xilinx System Generator, a dedicated library for Mathworks Simulink. The design is downloaded to a Virtex-4 FPGA. The receiver is Non-Coherent (NC) in the sense that the receiver need not know the phase of the incoming signal. A feedback circuit is responsible for both packet and bit synchronization. Also, the receiver is implemented using non-coherent match filters instead of low pass filters which would be easier, but would degrade the performance. Finally, some interesting experiences that were gained during the learning process are discussed. In Appendix A, we evaluate different technological options in implementing communication modulating techniques and Software Defined Radio. These options include Digital Signal Processors, Field Programmable Gate Arrays, General Purpose Processors and Application Specific Integrated Circuits and a comparison between these choices is made.

Limitations: APPROVED FOR PUBLIC RELEASE
Description: Master's thesis
Pages: 125
Report Date: 01-Sep-2008
Report Number: A347884
Keywords relating to this report:
*COMPUTER PROGRAMS
*COMPUTERIZED SIMULATION
*GATES_CIRCUITS_
*TRANSMITTER RECEIVERS
ARRAYS
COMMUNICATION AND RADIO SYSTEMS
COMPUTER PROGRAMMING
DIGITAL SYSTEMS
ENVIRONMENTS
FIELD EQUIPMENT
INTEGRATED CIRCUITS
LEARNING
LIBRARIES
LOW PASS FILTERS
PROCESSING EQUIPMENT
SIGNAL PROCESSING
THESES
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