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本帖最后由 cjsb37 于 2013-4-29 09:27 编辑
科技的发展从教育入手,美国深得其精髓。加利福尼亚大学伯克利分校是美国名校之一,从它的新课程设置,我们可以窥其新技术的发展方向。以下是“开发FPGA的DSP”的课程大纲:
This course provides introductory as well as state-of-the-art coverage on the design and implementation of FPGA signal processing systems. The emphasis is on the use of FPGAs for digital communications. The course presents a combination of signal processing theory, FPGA architecture, and datapath design.
Topics covered include an overview of current generation FPGAs, digital filters, multirate filters, building transform processors, adaptive filters, adaptive channel equalizers, symbol timing recovery, carrier removal, DDC, DUC, FEC, and using sigma-delta modulation techniques in FPGA systems. The course also covers how to implement an FPGA DSP design using VHDL and visual dataflow methodologies. Design techniques are presented that emphasize silicon-efficient and high-performance FPGA implementations of the various signal processing topics addressed in the course. Price includes course notes.
Who Should Attend
Signal processing engineers and scientists planning on implementing signal processing systems using programmable logic, and logic/hardware engineers involved with the implementation of FPGA-based signal processing platforms. A basic understanding of signal processing theory, and the fundamentals of digital filters is assumed. Some exposure to programmable logic, primarily FPGA technology, would be beneficial.
Topic Outline
Signal Processing Theory and Algorithms
Multirate filters
DFT and FFT
Adaptive systems and algorithms
Sigma-delta modulation
CORDIC processing techniques
Digital Communications
Digital-down and up conversion
QAM modulation and demodulation
Channel equalizers
Blind equalizers
Digital phase-locked loops
Timing recovery
Carrier recovery
Software defined radio techniques
FPGAs
State-of-the-art FPGA architecture
When and why you use an FPGA for signal processing
Designing FPGA datapaths
Implementing FPGA systems
FPGA DSP benchmarks
System Implementation and Verification
Implementing efficient FPGA signal processing systems using Simulink
Simulation and verification strategies
Hardware-in-the-loop based rapid design and prototyping
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