IDDDP Course Work

Additional guidelines for Interdisciplinary Dual Degree Programme (IDDDP) by SysCon

  1. The candidate must satisfy the minimum eligibility criteria stipulated by the Academic section
  2. A SysCon core faculty member must agree to guide the candidate.
  3. In any year, a core faculty member can agree to guide (i.e. recommend) at most one candidate applying for the SysCon IDDDP.
  4. The candidate must have completed any two courses from our list of minor courses within the first six semesters of the B.Tech program and have an average score of at least 7.5 in these two courses. This requirement can be waived if the student has credited some equivalent courses in other departments which in their entirety cover the topics covered in any two SysCon minor courses. The average grade requirement for the equivalent courses is 7.5. The decision about granting the waiver will be taken by the IDPC.


In case more than two candidates satisfying all the above requirements apply for the SysCon IDDDP, then the two candidates with the highest CPIs will be recommended for admission.
The semester wise course structure is given below:


L - Lectures per Week
T - Tutorials per Week
P - Practical per Week
C - Credits

Core / Compulsory Courses

Semester Seven
    L T P C
SC Core Course 3 0 0 6
SC Core Course / Elective 3 0 0 6
SC Core Course / Elective 3 0 0 6
  Seminar 0 0 0 4
          18 + 4


Semester Eight
    L T P C
SC Core Course 3 0 0 6
SC Core Course / Elective 3 0 0 6
SC Core Course / Elective 3 0 0 6
          18


Semester Nine
    L T P C
SC Core Course 3 0 0 6
SC Core Course / Elective 3 0 0 6
  DDP Stage 1       30
          42


Semester Ten
    L T P C
  DDP Stage 2       42


Total Credits
Courses: 48 + 4
Project: 72



List of Core Courses

SC 639 - Mathematical Structures for Control
SC 645 - Intelligent Feedback Control
SC 625 - Systems Theory
SC 629 - Introduction to Probability and Random Processes
SC 602 - Control of Nonlinear Dynamical Systems
SC 607 - Optimisation




List of Electives
SC 624 - Differential Geometric Methods in Control
SC 619 - Control of Langrangian and Hamiltonian Systems
SC 627 - Motion Planning and Coordination of Autonomous Vehicles
SC 605 - Optimization-based Control of Stochastic Systems
SC 618 - Analytic and Geometric Dynamics
SC 631 - Games and Information
SC 633 - Geometric and Analytic Aspects of Optimal Control
SC 634 - Introduction to Mobile robotics
SC 636 - Theory of Output Regulation
SC 637 - Sparsity methods in systems and Control
SC 638 - Quantum Control
SC 702 - Control of Distributed Parameter Systems
SC 605 - Optimization-based Control of Stochastic Systems
SC 612 - Introduction to Linear Filtering and Beyond
SC 616 - Large Scale Systems
SC 617 - Adaptive Control Theory
SC 621 - Quantitative Feedback Theory I
SC 623 - Optimal and Robust Control
SC 628 - Guidance Strategies for Autonomous Vehicles
SC 700 - Embeded Control System
SC 630 - Variable Structure and Sliding Mode Control
SC 635 - Advance Topics in Mobile Robotics
SC 701 - Physics and Control
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