BEE303 Basic Signal & Systems Syllabus
AKTU B.Tech · 3rd Semester · Unit-wise syllabus (effective 2023-24)
BEE303 Basic Signal & Systems (also written as KEE303) is a subject in Semester 3 of the AKTU B.Tech programme, prescribed by Dr. A.P.J. Abdul Kalam Technical University. It carries 3 credits with an L-T-P of 2-1-0. The syllabus is divided into 5 units: Pre- Requisites and Analogous System, Pre- Requisites, Pre- Requisites, Pre- Requisites, Pre- Requisite. The complete unit-wise topic list, course outcomes and reference books are given below, taken from the official AKTU syllabus effective from 2023-24.
BEE303 Subject Details
| Subject Code | BEE303 / KEE303 |
|---|---|
| Subject Name | Basic Signal & Systems |
| University | Dr. A.P.J. Abdul Kalam Technical University (AKTU) |
| Course | B.Tech (Bachelor of Technology) |
| Year / Semester | 2nd Year · 3rd Semester |
| Credits | 3 |
| L-T-P | 2-1-0 |
| Total Units | 5 |
| Scheme Effective From | 2023-24 |
| Last Verified | 2026-08-15 |
BEE303 Basic Signal & Systems Unit-Wise Syllabus
Official AKTU syllabus (effective 2023-24) — 5 units.
Unit 1: Pre- Requisites · Analogous System
Pre- Requisites: Differential Equations. Introduction to Continuous Time Signals and Systems: Introduction to continuous time and discrete time signals, Classification of signals with their mathematical representation and characteristics. Transformation of independent variable, Introduction to various type of system, basic system properties. Analogous System: Linear& Rotational mechanical elements, force-voltage and force-current analogy, modeling of mechanical and electro-mechanical systems: Analysis of first and second order linear systems by classical method.
Unit 2: Pre- Requisites
Pre- Requisites: Fourier Series & Fourier Transform Fourier Transform Analysis:, Fourier symmetry, Fourier transform: Properties, application to network analysis. Definition of DTFS, and DTFT, Sampling Theorem.
Unit 3: Pre- Requisites
Pre- Requisites: Laplace Transform Laplace Transform Analysis: Review of Laplace Transform, Properties of Laplace Transform, Initial & Final value Theorems, Inverse Laplace Transform, Convolution Theorem, Impulse response, Application of Laplace Transform to analysis of networks, waveform synthesis and Laplace Transform to complex waveforms
Unit 4: Pre- Requisites
Pre- Requisites:Matrix Calculations. State – Variable analysis: Introduction, State Space representation of linear systems, Transfer function and state Variables, State Transition Matrix, Solution of state equations for homogeneous and non-homogeneous systems, Applications of State – Variable technique to the analysis of linear systems.
Unit 5: Pre- Requisite
Pre- Requisite: Z-Transforms. Z – Transform Analysis: Concept of Z – Transform& ROC, Z – Transform of common functions, Inverse Z – Transform, Initial & Final value Theorems, Applications to solution of difference equations, Properties of Z-transform.
BEE303 Course Outcomes
- Pre-requisites of course: Basic Electrical Engineering, Engineering Mathematics
- Level, KL
- Upon the completion of the course, the student will be able to:
- CO 1 Represent the various types of signals & systems and can perform mathematical
- K2
- operations on them.
- CO2 Analyze the response of LTI system to Fourier series and Fourier transform and to
- K4
- evaluate their applications to network analysis.
- CO3 Analyze the properties of continuous time signals and system using Laplace K4
- transform and determine the response of linear system to known inputs.
- CO4 Implement the concepts of Z transform to solve complex engineering problems
- K3
- using difference equations.
- CO5 Develop and analyze the concept of state-space models for SISO & MIMO
- K4
- system.
- K1 – Remember K2 – Understand K3 – Apply K4 – Analyze K5 – Evaluate K6 – Create
BEE303 Reference Books
- Oppenhiem, Wilsky, Nawab, “Signals & Systems”, Pearson Education, 2015
- Anand Kumar, “Signals & Systems”, PHI
- Choudhary D. Roy, “Network & Systems”, Wiley Eastern Ltd.
Frequently Asked Questions about BEE303
What is the syllabus of BEE303 Basic Signal & Systems?
The AKTU BEE303 Basic Signal & Systems syllabus is divided into 5 units: Pre- Requisites and Analogous System; Pre- Requisites; Pre- Requisites; Pre- Requisites; Pre- Requisite. The complete topic list for each unit is published on this page, taken from the official Dr. A.P.J. Abdul Kalam Technical University syllabus effective from 2023-24.
How many units are there in BEE303?
BEE303 Basic Signal & Systems has 5 units in the AKTU syllabus, with an L-T-P (Lecture-Tutorial-Practical) structure of 2-1-0 and 3 credits.
Is BEE303 the same subject as KEE303?
Yes. AKTU renumbered its B.Tech subject codes from the 2022-23 session onwards, so the same subject appears as BEE303 and KEE303 depending on the scheme year. The syllabus content is the same.
Which semester is BEE303 taught in?
BEE303 Basic Signal & Systems is taught in Semester 3 of the 2nd year of the AKTU B.Tech programme.
How many credits is BEE303 worth?
BEE303 Basic Signal & Systems carries 3 credits in the AKTU evaluation scheme, with an L-T-P of 2-1-0.
Where can I download BEE303 previous year question papers?
All AKTU BEE303 Basic Signal & Systems previous year question papers are available to download free on Ryzenstudy, with no login or registration required.
Is this the official AKTU syllabus for BEE303?
Yes. Every topic on this page is taken from the official Dr. A.P.J. Abdul Kalam Technical University syllabus document (AKTU B.Tech 2nd Year Electrical Engineering Syllabus), effective from 2023-24. A direct link to the original AKTU PDF is provided at the top of this page. Last verified on 2026-08-15.
Related AKTU Syllabus
Source: Dr. A.P.J. Abdul Kalam Technical University official syllabus — AKTU B.Tech 2nd Year Electrical Engineering Syllabus, effective from 2023-24. Ryzenstudy is not affiliated with AKTU. Content last verified on 2026-08-15.