Dissertation > Excellent graduate degree dissertation topics show
Research of Underwater Acoustic Communication Coding Based on FPGA
Author: DengLi
Tutor: XuGuoHua
School: Huazhong University of Science and Technology
Course: Marine Engineering
Keywords: AUV self-rescue system Field-programmable gate array Acoustic communication Verilog Hardware-Description-Language Frequency coding
CLC: U666.7
Type: Master's thesis
Year: 2011
Downloads: 19
Quote: 0
Read: Download Dissertation
Abstract
|
The ocean is an very important area for human being. With the development of human civilization, human’s consumption of resource has significant growth. Human have to know, develop and take advantage of the ocean for furtuer development. Underwater acoustic communication is a very challenging research topic in the research of ocean development. As the water acoustic channel is a very complex space - time - frequency-dependent parameter random multipath transmission channel, coupled with its high environmental noise, narrow bandwidth, low applicable carrier frequency, delay in transmission and many other negative factors which exacerbate the difficulties of anti-multipath interference. To achieve low bit error rate and high data rate is still very difficult, thus acoustic communication technology has become today’s most complex communications technologies.Based on a set of acoustic response using to the AUV(Autonomous Underwater Vehicle) self-help system, this thesis introduces the composition of the system and signal as well as the whole working process, analyzes the circuit of coding and its principle, and also proposes proposes the software frequency coding, which is based on a large scale of logic devices FGPA(Field-programmable gate array). Under the circumstances of QuartusⅡ, by comparing with the original digital circuits realization, using the verilog language HDL(Hardware—Description—Language)and the parametric programming method which realizes the software frequency coding in FPGA improves the reliability and integration of the acoustic response system, reduces power, and strengthen the scalability of the system.By simulation on coding programing using development software and test of frequency and coding on development board, the theisi achives desigred goals. In subsequent research, to further verify the effect of improving, the thesis also makes circuit board integrated with AUV. It is foreseeable that the maturity of underwater acoustic communication technology will lead to on-going development of marine science and its equipment development.
|
Related Dissertations
- Research on MAC Protocols for Underwater Acoustic Networks,TN929.3
- A Study of PAPR Reducing in the OFDM Underwater Acoustic Communication Systems,TN919.3
- Indoor Wireless Visible Light Communication System Based on Quadrature Amplitude Modulation,TN929.1
- Modular Design and Implementation of Multi-Channel NAND Flash Controller,TP333
- The Theoretical and Experimental Research on Time-Reversed OFDM Underwater Acoustic Communications,TN929.3
- The Design and Simulation of High-speed Underwater Acoustic Communication Systems,TN929.3
- Convolutional code decoding algorithm and its FPGA implementation,TN791
- Lightning FPGA-based signal processing research,TN791
- PCI-E interface -based data acquisition system FPGA Design and Implementation,TN791
- FPGA-based 3G BERT Design and Research,TN929.5
- FPGA-based high-speed data acquisition system design,TP274.2
- Based on Windows and Interpolated FFT power harmonic detection technology,TM935
- Train emergency intercom unit fully digital hardware design and implementation,TP273
- Airborne synthetic aperture radar signal simulation,TN958
- Design and implementation of the DSRC communication protocols based on embedded Linux,TN915.04
- π/4-DQPSK baseband communication system design and simulation,TN919.3
- The Study on Frequency-hopping Communication Techniques Used in Network-Torpedo,TN97
- USB2.0 device controller design,TP336
- Simulation and FPGA Implementation of Wireless Channel Model,TN791
- The FPGA Solution of Radar Signal De-noising Based on Wavelet Transform,TN957.51
CLC: > Transportation > Waterway transport > Marine Engineering > Navigation equipment, acoustic equipment > Acoustic equipment
© 2012 www.DissertationTopic.Net Mobile
|