BM3451 – Bio Control Systems Syllabus Regulation 2021 Anna University

In this article, we are going to discuss the B.E. Biomedical Engineering, semester IV, Anna University connected to the regulation 2021 subject syllabus. Let’s see what’s more…

We tried our best to provide the following unit-wise BM3451 – Bio Control Systems detailed Syllabus. We sum up the appropriate textbooks and references to this page. If you have any doubts regarding the syllabus, you can simply comment below on the following page. Hope this information is useful. Share it with your classmates. Thanks for landing on this page.

If you want to know more about the B.E. Biomedical Engineering Syllabus connected to an affiliated institution’s four-year undergraduate degree program. We provide you with a detailed Year-wise, semester-wise, and Subject-wise syllabus in the following link B.E. Biomedical Engineering Syllabus Regulation 2021 Anna University.

Aim of Concept:

The objective of this course is to enable the student to

  • Understand the concept behind feedback and continuum in various systems and subsystems and the need for mathematical modeling of various systems.
  • Analyze the systems in time and frequency domains
  • Understand the concept of stability of various systems.
  • Apply mathematical modeling principles in understanding the various fundamental biological systems.

BM3451 – Bio Control Systems Syllabus

Unit I: Introduction

Open and Closed loop Systems, Mathematical Modeling of systems, Block diagram and signal flow graph representation of systems – reduction of block diagram and signal flow graph, Introduction to Physiological control systems- Illustration, Linear models of physiological systems, Difference between engineering and physiological control systems.

Unit II: Time Response Analysis

Step and impulse responses of first order and second order systems – time domain specifications of first and second order systems – steady state error constants.

Unit III: Stability Analysis

Definition of stability, Routh- Hurwitz criteria of stability, Root locus technique – construction of root locus and study of stability.

Unit IV: Frequency Response Analysis

Frequency domain specifications – Polar plots – Bode plots – Nyquist plot – Nyquist stability criterion, closed loop stability – Constant M and N circles – Nichol‘s chart.

Unit V: Biological Control System Analysis

Simple models of muscle stretch reflex action – steady state analysis of muscle stretch reflex action, transient response analysis of neuromuscular reflex model action, frequency response of circulatory control model, Stability analysis of Pupillary light reflex.

Text Books:

  1. I.J. Nagarath and M. Gopal, Control Systems Engineering, New Age International Publishers, 1st September, 2018.
  2. Michael C K Khoo, Physiological Control Systems, IEEE Press, Prentice Hall India, 2005.

References:

  1. Salivahanan S. Rengaraj R. and Venkatakrishnan G. R., Control Systems Engineering, Pearson Education India, 2015.
  2. Benjamin C. Kuo, Automatic Control Systems, Prentice Hall of India, 1995.
  3. Ogata, Katsuhiko and Yanjuan Yang, Modern control engineering, Vol 4, Prentice-Hall, 2002.

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