JoVE Logo

Anmelden

6.6 : Kirchoff's Laws using Phasors

Analyzing AC circuits in electrical systems is a fundamental aspect of electrical engineering. In these circuits, AC power is supplied from a distribution panel and wired to various household appliances in parallel. To perform a comprehensive analysis, electrical engineers use Kirchhoff's voltage and current laws, which are equally applicable in AC circuits as in DC circuits.

Kirchhoff's voltage law (KVL) states that the sum of phasor voltages around a closed loop in an AC circuit equals zero. In the sinusoidal steady state, where AC voltages vary sinusoidally with time, these voltages can be represented in the time domain and then converted into phasor equivalents. This process ensures that the sum of the phasor voltages in a closed loop remains zero.

Equation1

Kirchhoff's current law (KCL) applies to circuit nodes, asserting that the total current entering a node equals the total current exiting the node. When expressed in phasor notation, the sum of phasor currents at a node also equals zero.

Equation2

These laws are essential tools for AC circuit analysis and enable engineers to work seamlessly in the frequency domain. They facilitate various tasks such as impedance combination, nodal and mesh analysis, superposition, and source transformation, which are crucial in designing and troubleshooting electrical circuits in residential and industrial settings.

Tags

Kirchhoff s LawsAC CircuitsPhasorsVoltage LawCurrent LawElectrical EngineeringSinusoidal Steady StateCircuit AnalysisImpedance CombinationNodal AnalysisMesh AnalysisSuperpositionSource Transformation

Aus Kapitel 6:

article

Now Playing

6.6 : Kirchoff's Laws using Phasors

AC Circuit Analysis

394 Ansichten

article

6.1 : Sinusoidal Sources

AC Circuit Analysis

477 Ansichten

article

6.2 : Graphical and Analytic Representation of Sinusoids

AC Circuit Analysis

375 Ansichten

article

6.3 : Phasors

AC Circuit Analysis

492 Ansichten

article

6.4 : Phasor Arithmetics

AC Circuit Analysis

248 Ansichten

article

6.5 : Phasor Relationships for Circuit Elements

AC Circuit Analysis

501 Ansichten

article

6.7 : Impedances and Admittance

AC Circuit Analysis

640 Ansichten

article

6.8 : Impedance Combination

AC Circuit Analysis

399 Ansichten

article

6.9 : Node Analysis for AC Circuits

AC Circuit Analysis

292 Ansichten

article

6.10 : Mesh Analysis for AC Circuits

AC Circuit Analysis

343 Ansichten

article

6.11 : Source Transformation for AC Circuits

AC Circuit Analysis

535 Ansichten

article

6.12 : Thévenin Equivalent Circuits

AC Circuit Analysis

254 Ansichten

article

6.13 : Norton Equivalent Circuits

AC Circuit Analysis

345 Ansichten

article

6.14 : Superposition Theorem for AC Circuits

AC Circuit Analysis

620 Ansichten

article

6.15 : Op Amp AC Circuits

AC Circuit Analysis

189 Ansichten

See More

JoVE Logo

Datenschutz

Nutzungsbedingungen

Richtlinien

Forschung

Lehre

ÜBER JoVE

Copyright © 2025 MyJoVE Corporation. Alle Rechte vorbehalten