Electromagnetic Transient Analysis and Protective Relaying Techniques for Power Transformers

Electromagnetic Transient Analysis and Novel Protective Relaying Techniques for Power Transformers
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Help: Notes Video also on Canvas. Nice cut-away of large transformer. Safety cont'd ; Relay impedance; Generator grounding; Grounding Transformers. Semester Wrapup.

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Finals Week. Mon Apr 29th.

Lin, Xiangning

Bettinali, G. Dommel, J. Monaco, S. Iravani, X. Gustavsen and A. He invented a variety of novel protection algorithms for the main protection of the power transformer. The nonlinear internal parameters of CCVT introduce small oscillations but can take the form of large distortions in voltage signal [ 28 ].

Course Description and Learning Goals:. Students who complete this course will have gained a theoretical and applied understanding of power system protection. The performance of instrument transformers, transducers, protective relays, and circuit breakers is first addressed. These devices are then integrated into coordinated protective systems for generators, transformers, transmission lines, reactors, capacitor banks, system buses, etc.

Although basic protection concepts are hardware-independent, the application of electromagnetic, solid state, and microprocessor-based relays will also be discussed. Trade-offs between reliability, selectivity, speed, simplicity, and economy are emphasized. A hands-on lab project, using state of the art equipment, will also be completed during the course.

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Prerequisite Material. L1 - Jan 14th.

Electromagnetic Transient Analysis and Novell Protective Relaying Techniques for Power Transformers

L2 - Jan 16th L3 - Jan 18th. Jan 21st. L5 - Jan 23rd L6 - Jan 25th. Kershaw, S. Laveuve, J. Keradec, G. Ashok Kumar, S. Mombello, G. Kachler, R. Maier, H. Mendis, M. Bishop, D. Kamata, A.

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Description

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Introduction

Konno, T. Uede, I. Itoh, K. Sakaki, N. Aoki, E. Iwakuma, K. Funaki, M. Takeo, K.