Distribution System Modeling and Analysis, 3rd Edition

Book description

Updated to reflect the latest changes and advances in the field, Distribution System Modeling and Analysis, Third Edition again illustrates methods that will ensure the most accurate possible results in computational modeling for electric power distribution systems. With the same simplified approach of previous editions, this book clearly explains

Table of contents

  1. Front Cover
  2. Contents (1/2)
  3. Contents (2/2)
  4. Preface
  5. Acknowledgments
  6. Author
  7. Chapter 1: Introduction to Distribution Systems (1/2)
  8. Chapter 1: Introduction to Distribution Systems (2/2)
  9. Chapter 2: Nature of Loads (1/6)
  10. Chapter 2: Nature of Loads (2/6)
  11. Chapter 2: Nature of Loads (3/6)
  12. Chapter 2: Nature of Loads (4/6)
  13. Chapter 2: Nature of Loads (5/6)
  14. Chapter 2: Nature of Loads (6/6)
  15. Chapter 3: Approximate Method of Analysis (1/8)
  16. Chapter 3: Approximate Method of Analysis (2/8)
  17. Chapter 3: Approximate Method of Analysis (3/8)
  18. Chapter 3: Approximate Method of Analysis (4/8)
  19. Chapter 3: Approximate Method of Analysis (5/8)
  20. Chapter 3: Approximate Method of Analysis (6/8)
  21. Chapter 3: Approximate Method of Analysis (7/8)
  22. Chapter 3: Approximate Method of Analysis (8/8)
  23. Chapter 4: Series Impedance of Overhead and Underground Lines (1/9)
  24. Chapter 4: Series Impedance of Overhead and Underground Lines (2/9)
  25. Chapter 4: Series Impedance of Overhead and Underground Lines (3/9)
  26. Chapter 4: Series Impedance of Overhead and Underground Lines (4/9)
  27. Chapter 4: Series Impedance of Overhead and Underground Lines (5/9)
  28. Chapter 4: Series Impedance of Overhead and Underground Lines (6/9)
  29. Chapter 4: Series Impedance of Overhead and Underground Lines (7/9)
  30. Chapter 4: Series Impedance of Overhead and Underground Lines (8/9)
  31. Chapter 4: Series Impedance of Overhead and Underground Lines (9/9)
  32. Chapter 5: Shunt Admittance of Overhead and Underground Lines (1/4)
  33. Chapter 5: Shunt Admittance of Overhead and Underground Lines (2/4)
  34. Chapter 5: Shunt Admittance of Overhead and Underground Lines (3/4)
  35. Chapter 5: Shunt Admittance of Overhead and Underground Lines (4/4)
  36. Chapter 6: Distribution System Line Models (1/8)
  37. Chapter 6: Distribution System Line Models (2/8)
  38. Chapter 6: Distribution System Line Models (3/8)
  39. Chapter 6: Distribution System Line Models (4/8)
  40. Chapter 6: Distribution System Line Models (5/8)
  41. Chapter 6: Distribution System Line Models (6/8)
  42. Chapter 6: Distribution System Line Models (7/8)
  43. Chapter 6: Distribution System Line Models (8/8)
  44. Chapter 7: Voltage Regulation (1/13)
  45. Chapter 7: Voltage Regulation (2/13)
  46. Chapter 7: Voltage Regulation (3/13)
  47. Chapter 7: Voltage Regulation (4/13)
  48. Chapter 7: Voltage Regulation (5/13)
  49. Chapter 7: Voltage Regulation (6/13)
  50. Chapter 7: Voltage Regulation (7/13)
  51. Chapter 7: Voltage Regulation (8/13)
  52. Chapter 7: Voltage Regulation (9/13)
  53. Chapter 7: Voltage Regulation (10/13)
  54. Chapter 7: Voltage Regulation (11/13)
  55. Chapter 7: Voltage Regulation (12/13)
  56. Chapter 7: Voltage Regulation (13/13)
  57. Chapter 8: Three-Phase Transformer Models (1/15)
  58. Chapter 8: Three-Phase Transformer Models (2/15)
  59. Chapter 8: Three-Phase Transformer Models (3/15)
  60. Chapter 8: Three-Phase Transformer Models (4/15)
  61. Chapter 8: Three-Phase Transformer Models (5/15)
  62. Chapter 8: Three-Phase Transformer Models (6/15)
  63. Chapter 8: Three-Phase Transformer Models (7/15)
  64. Chapter 8: Three-Phase Transformer Models (8/15)
  65. Chapter 8: Three-Phase Transformer Models (9/15)
  66. Chapter 8: Three-Phase Transformer Models (10/15)
  67. Chapter 8: Three-Phase Transformer Models (11/15)
  68. Chapter 8: Three-Phase Transformer Models (12/15)
  69. Chapter 8: Three-Phase Transformer Models (13/15)
  70. Chapter 8: Three-Phase Transformer Models (14/15)
  71. Chapter 8: Three-Phase Transformer Models (15/15)
  72. Chapter 9: Load Models (1/6)
  73. Chapter 9: Load Models (2/6)
  74. Chapter 9: Load Models (3/6)
  75. Chapter 9: Load Models (4/6)
  76. Chapter 9: Load Models (5/6)
  77. Chapter 9: Load Models (6/6)
  78. Chapter 10: Distribution Feeder Analysis (1/8)
  79. Chapter 10: Distribution Feeder Analysis (2/8)
  80. Chapter 10: Distribution Feeder Analysis (3/8)
  81. Chapter 10: Distribution Feeder Analysis (4/8)
  82. Chapter 10: Distribution Feeder Analysis (5/8)
  83. Chapter 10: Distribution Feeder Analysis (6/8)
  84. Chapter 10: Distribution Feeder Analysis (7/8)
  85. Chapter 10: Distribution Feeder Analysis (8/8)
  86. Chapter 11: Center-Tapped Transformers and Secondaries (1/10)
  87. Chapter 11: Center-Tapped Transformers and Secondaries (2/10)
  88. Chapter 11: Center-Tapped Transformers and Secondaries (3/10)
  89. Chapter 11: Center-Tapped Transformers and Secondaries (4/10)
  90. Chapter 11: Center-Tapped Transformers and Secondaries (5/10)
  91. Chapter 11: Center-Tapped Transformers and Secondaries (6/10)
  92. Chapter 11: Center-Tapped Transformers and Secondaries (7/10)
  93. Chapter 11: Center-Tapped Transformers and Secondaries (8/10)
  94. Chapter 11: Center-Tapped Transformers and Secondaries (9/10)
  95. Chapter 11: Center-Tapped Transformers and Secondaries (10/10)
  96. Appendix A: Conductor Data
  97. Appendix B: Underground Cable Data
  98. Back Cover

Product information

  • Title: Distribution System Modeling and Analysis, 3rd Edition
  • Author(s): William H. Kersting
  • Release date: February 2016
  • Publisher(s): CRC Press
  • ISBN: 9781439856475