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Overhead power line
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Related lectures (30)
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Transmission Lines: Solutions and Equations
Explores time-domain and frequency-domain solutions for transmission lines, including the Bergeron Method and input impedance.
Transmission Line Theory: Frequency Solutions
Explores frequency solutions for transmission lines, including voltage reflection coefficients and the Blumer index.
Lightning-induced Voltages: FDTD Dispersion
Covers lightning-induced voltages, FDTD dispersion, and surge arrester applications.
Transmission Lines: Theory and Assumptions
Covers the theory and assumptions behind transmission lines, including TEM mode of propagation and antenna mode currents.
Telegrapher's Equations: Solutions and Examples
Explores time-domain solutions for lossless lines and examples of wave propagation behavior.
Electrical Networks: Stability and Phenomena
Explores electrical network stability, phenomena, components, and financial impacts.
Three-Phase Sinusoidal Circuits
Covers the efficiency and weight/power ratio of three-phase alternators and symmetrical three-phase systems.
Transmission Line Networks and Multiconductor Lines
Explores transmission line networks and multiconductor lines, discussing wave propagation and complex network examples.
3-Phase Systems: Voltage Relationships
Explores voltage relationships in 3-phase systems, power calculations, and implications of unbalanced systems.
Power Systems Dynamics
Explores power systems elements, load flow calculations, and iterative solution methods.
Multiple Reflection Diagrams
Analyzes multiple reflections in electromagnetism and their impact on transmission lines.
Sinusoidal Excitation and Complex Phasors
Explores the response of transmission lines to sinusoidal signals and the use of complex phasors for simplifying analysis.
Power Flow Analysis
Covers power flow analysis, economic dispatching, and optimal power flow in electrical networks.
Transmission Line Coupling Models and Solutions
Covers transmission line theory, Telegrapher's Equations, frequency domain solutions, multi-conductor lines, and load responses.
Multiconductor Transmission Lines
Explores solutions and examples for multiconductor transmission lines, covering line parameters, wave propagation, inductance, capacitance matrices, and modal wave equations.
Multiple Reflection Diagram Example
Demonstrates the application of multiple reflection diagrams to analyze signal behavior in transmission lines.
Transmission Line Models
Explores transmission line models, including Taylor et al. and Agrawal et al., discussing equations and boundary conditions.
Torsion and Stress Concentration
Explores torsion, stress concentration, power transmission, and torsional stiffness in various geometries.
Transmission Lines: Arbitrary Terminations
Explores the effects of complex impedance on reflected waves and distribution of quantities.
Maximum Power and Adaptation
Explores the maximum power supplied by a real source in electrical engineering.
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