ENEE151
Electric Circuit II
Syllabus
- Network Analysis (4 hours)
- Mesh analysis with dependent and independent sources
- Nodal analysis with dependent and independent sources
- Matrix method application in network analysis
- Transients in Electric Circuit (3 hours)
- Network element characteristics
- Initial conditions evaluation procedures
- Derivative initial values
- R-L-C network initial conditions
- Transient Analysis R-L-C Circuit by Classical Method (10 hours)
- First and higher-order differential equations with constant coefficients
- Particular integral using undetermined coefficients
- R-L and R-C circuit responses (DC, exponential, sinusoidal excitation)
- Series and parallel R-L-C circuit responses
- Review of Laplace Transformation (3 hours)
- Definitions and network analysis properties
- Laplace transforms of forcing functions
- Heaviside's partial fraction expansion
- Transient Analysis Using Laplace Transform (6 hours)
- R-L, R-C, series and parallel R-L-C responses
- DC, exponential, and sinusoidal excitations
- Network Transfer Function and Frequency Response (8 hours)
- Complex frequency concept
- Transfer functions and pole-zero analysis
- Bode diagrams and bandwidth
- Filter types (high-pass, low-pass, band-pass, band-stop)
- Fourier Series (3 hours)
- Trigonometric, polar, and exponential forms
- Periodic non-sinusoidal waveform analysis
- Two-Port Parameters of Network (8 hours)
- Impedance, admittance, transmission, and hybrid parameters
- Parameter transformations and interconnections
- Reciprocity and symmetry conditions
Practicals
- First and second-order transient response measurements
- Frequency response and Bode diagram analysis
- Simulation of transient and frequency responses