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Res.6-008 Digital Signal Processing (MIT OCW). This consists of 22 video lectures (20 lectures plus 2 demonstration videos) given by Prof. Alan V. Oppenheim, discussing the analysis and representation of discrete-time signal systems, digital filters, and computation of the discrete Fourier transform.

FREE
This course includes
Hours of videos

611 years

Units & Quizzes

22

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Certificate of Completion

Digital Signal Processing begins with a discussion of the analysis and representation of discrete-time signal systems, including discrete-time convolution, difference equations, the z-transform, and the discrete-time Fourier transform. Emphasis is placed on the similarities and distinctions between discrete-time. The course proceeds to cover digital network and nonrecursive (finite impulse response) digital filters. Digital Signal Processing concludes with digital filter design and a discussion of the fast Fourier transform algorithm for computation of the discrete Fourier transform. (from ocw.mit.edu)

Course Currilcum

  • Demonstration – Sampling, Aliasing, and Frequency Response, Part 1 Unlimited
  • Demonstration – Sampling, Aliasing, and Frequency Response, Part 2 Unlimited
  • Lecture 01 – Introduction Unlimited
  • Lecture 02 – Discrete-Time Signals and Systems, Part 1 Unlimited
  • Lecture 03 – Discrete-Time Signals and Systems, Part 2 Unlimited
  • Lecture 04 – The Discrete-Time Fourier Transform Unlimited
  • Lecture 05 – The z-Transform Unlimited
  • Lecture 06 – The Inverse z-Transform Unlimited
  • Lecture 07 – z-Transform Properties Unlimited
  • Lecture 08 – The Discrete Fourier Series Unlimited
  • Lecture 09 – The Discrete Fourier Transform Unlimited
  • Lecture 10 – Circular Convolution Unlimited
  • Lecture 11 – Representation of Linear Digital Networks Unlimited
  • Lecture 12 – Network Structures for Infinite Impulse Response (IIR) Systems Unlimited
  • Lecture 13 – Network Structures for Finite Impulse Response (FIR) Systems Unlimited
  • Lecture 14 – Design of IIR Digital Filters, Part 1 Unlimited
  • Lecture 15 – Design of IIR Digital Filters, Part 2 Unlimited
  • Lecture 16 – Digital Butterworth Filters Unlimited
  • Lecture 17 – Design of FIR Digital Filters Unlimited
  • Lecture 18 – Computation of the Discrete Fourier Transform, Part 1 Unlimited
  • Lecture 19 – Computation of the Discrete Fourier Transform, Part 2 Unlimited
  • Lecture 20 – Computation of the Discrete Fourier Transform, Part 3 Unlimited