Author: | Dr. Hidaia Alassouli | ISBN: | 1230002144733 |
Publisher: | Dr. Hidaia Mahmood Alassouli | Publication: | February 7, 2018 |
Imprint: | Language: | English |
Author: | Dr. Hidaia Alassouli |
ISBN: | 1230002144733 |
Publisher: | Dr. Hidaia Mahmood Alassouli |
Publication: | February 7, 2018 |
Imprint: | |
Language: | English |
This book includes my lecture notes for electrical power transmission course. The power transmission process, from generation to distribution is described and expressions for resistance, inductance and capacitance of high-voltage power transmission lines are developed used to determine the equivalent circuit of a three-phase transmission line.
The book is divided to different learning outcomes
Part 1- Describe the power transmission process, from generation to distribution.
Part 2- Develop expressions for resistance, inductance and capacitance of high-voltage power transmission lines and determine the equivalent circuit of a three-phase transmission line.
Part 1: Describe the power transmission process, from generation to distribution.
Part 2: Develop expressions for resistance, inductance and capacitance of high-voltage power transmission lines and determine the equivalent circuit of a three-phase transmission line.
Author: Dr. Hidaia Alaasouli
Email: [email protected]
This book includes my lecture notes for electrical power transmission course. The power transmission process, from generation to distribution is described and expressions for resistance, inductance and capacitance of high-voltage power transmission lines are developed used to determine the equivalent circuit of a three-phase transmission line.
The book is divided to different learning outcomes
Part 1- Describe the power transmission process, from generation to distribution.
Part 2- Develop expressions for resistance, inductance and capacitance of high-voltage power transmission lines and determine the equivalent circuit of a three-phase transmission line.
Part 1: Describe the power transmission process, from generation to distribution.
Part 2: Develop expressions for resistance, inductance and capacitance of high-voltage power transmission lines and determine the equivalent circuit of a three-phase transmission line.
Author: Dr. Hidaia Alaasouli
Email: [email protected]