![]() Oversampling for Digital AudioĪn article about the benefits of these techniques. The Scientist and Engineer's Guide to Digital Signal ProcessingĪ great practical introduction to DSP. If you wish to earn credit for ham radio licensing, consider taking EE198-13 Quick intro to Amateur RadioĬovers various implementations of linear convolution using the DFT, including Overlap-Add and Overlap-Save. Every student in the class will take a HAM radio licensing exam, and be licensed by the FCC to operate the radios. ![]() ![]() This will be used in Labs and the final project in the class. In addition, each student will get a Baofeng UV-5r hand held radio. Several possibilities are writing an FM receiver, digital radio receiver, Police scanner, GPS receiver, NOAA weather alert receiver or satelite imagery and more. The final project will also be based on SDR. Each student in the class will receive a dongle and will be able to experiment with its capabilities. The samples can then be used to digitally demodulate and process almost anything that is transmitted between 27-1700Mhz! Basically the chip allows the transfer of raw samples to a host computer. It was discovered by Eric Fry that DVB-T dongles based on the Realtek RTL2832U can be used as cheap Software Defined Radios (SDR). Thursdays 2-3pm Cory 506 (EE225E priority) Wednesdays 4-5pm Cory 506 or 504 if busy (EE123 Priority) It impacts all modern aspects of life and sciences from communication, entertainment to health and economics. Why should you care? Digital signal processing is one of the most important and useful tools an electrical engineer could have. ![]() Prerequisites: EECS 120, or instructor permission.Ĭourse objectives: To develop skills for analyzing and synthesizing algorithms and systems that process discrete time signals, with emphasis on realization and implementation. Digital filter design methods: windowing, frequency sampling, S-to-Z methods, frequency-transformation methods, optimization methods, 2-dimensional filter design. Digital signal processing topics: flow graphs, realizations, FFT, quantization effects, linear prediction. ![]() Catalog Description: (4 units) Discrete time signals and systems: Fourier and Z transforms, DFT, 2-dimensional versions. ![]()
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