Iniciar sesión

Consider encountering a circuit in a steady state where all its inputs are sinusoidal, yet they do not all possess the same frequency. Such a circuit is not classified as an alternating current (AC) circuit, and consequently, its currents and voltages will not exhibit sinusoidal behavior. However, this circuit can be analyzed using the principle of superposition.

The principle of superposition stipulates that the output of a linear circuit with several concurrent inputs is equivalent to the cumulative outputs when each input operates independently. The inputs to the circuit are the voltages from the independent voltage sources and the currents from the independent current sources.

When all inputs except one are set to zero, the remaining inputs become 0-V voltage sources and 0-A current sources. Given that 0-V voltage sources equate to short circuits and 0-A current sources correspond to open circuits, the sources linked to the other inputs are replaced by open or short circuits. What remains is a steady-state circuit with a single sinusoidal input, which qualifies as an AC circuit and is analyzed using phasors and impedances.

Hence, the principle of superposition is employed to transform a circuit with multiple sinusoidal inputs at varying frequencies into several separate circuits, each with a singular sinusoidal input. Each of these AC circuits is then analyzed using phasors and impedances to determine its sinusoidal output. The aggregate of these sinusoidal outputs will coincide with the output of the initial circuit.

Tags
Superposition TheoremAC CircuitsSinusoidal InputsLinear Circuit AnalysisVoltage SourcesCurrent SourcesPhasorsImpedancesSteady state CircuitFrequency AnalysisCircuit TransformationSinusoidal Output

Del capítulo 6:

article

Now Playing

6.14 : Superposition Theorem for AC Circuits

AC Circuit Analysis

519 Vistas

article

6.1 : Sinusoidal Sources

AC Circuit Analysis

343 Vistas

article

6.2 : Graphical and Analytic Representation of Sinusoids

AC Circuit Analysis

333 Vistas

article

6.3 : Phasors

AC Circuit Analysis

410 Vistas

article

6.4 : Phasor Arithmetics

AC Circuit Analysis

184 Vistas

article

6.5 : Phasor Relationships for Circuit Elements

AC Circuit Analysis

404 Vistas

article

6.6 : Kirchoff's Laws using Phasors

AC Circuit Analysis

318 Vistas

article

6.7 : Impedances and Admittance

AC Circuit Analysis

493 Vistas

article

6.8 : Impedance Combination

AC Circuit Analysis

258 Vistas

article

6.9 : Node Analysis for AC Circuits

AC Circuit Analysis

238 Vistas

article

6.10 : Mesh Analysis for AC Circuits

AC Circuit Analysis

296 Vistas

article

6.11 : Source Transformation for AC Circuits

AC Circuit Analysis

420 Vistas

article

6.12 : Thévenin Equivalent Circuits

AC Circuit Analysis

133 Vistas

article

6.13 : Norton Equivalent Circuits

AC Circuit Analysis

272 Vistas

article

6.15 : Op Amp AC Circuits

AC Circuit Analysis

128 Vistas

See More

JoVE Logo

Privacidad

Condiciones de uso

Políticas

Investigación

Educación

ACERCA DE JoVE

Copyright © 2025 MyJoVE Corporation. Todos los derechos reservados