71 results on '"Abad, Gonzalo"'
Search Results
2. CHAPTER 9: Hardware Solutions for LVRT: 9.3 CROWBAR.
3. CHAPTER 1: Introduction to A Wind Energy Generation System: 1.4 WIND ENERGY GENERATION SYSTEM BASED ON DFIM VSWT.
4. Index.
5. CHAPTER 1: Introduction to A Wind Energy Generation System: 1.6 VOLTAGE DIPS AND LVRT.
6. CHAPTER 1: Introduction to A Wind Energy Generation System: 1.5 GRID CODE REQUIREMENTS.
7. Appendix.
8. CHAPTER 1: Introduction to A Wind Energy Generation System: 1.3 VARIABLE SPEED WIND TURBINES (VSWTS).
9. CHAPTER 1: Introduction to A Wind Energy Generation System: 1.7 VSWT BASED ON DFIM MANUFACTURERS.
10. CHAPTER 1: Introduction to A Wind Energy Generation System: 1.2 BASIC CONCEPTS OF A FIXED SPEED WIND TURBINE (FSWT).
11. CHAPTER 2: Back-to-Back Power Electronic Converter: 2.4 CONTROL OF GRID SIDE SYSTEM.
12. CHAPTER 2: Back-to-Back Power Electronic Converter: 2.3 MULTILEVEL VSC TOPOLOGIES.
13. CHAPTER 2: Back-to-Back Power Electronic Converter: 2.2 BACK-TO-BACK CONVERTER BASED ON TWO-LEVEL VSC TOPOLOGY.
14. CHAPTER 3: Steady State of the Doubly Fed Induction Machine: 3.6 DESIGN REQUIREMENTS FOR THE DFIM IN WIND ENERGY GENERATION APPLICATIONS.
15. CHAPTER 4: Dynamic Modeling of the Doubly Fed Induction Machine: 4.2 DYNAMIC MODELING OF THE DFIM.
16. CHAPTER 3: Steady State of the Doubly Fed Induction Machine: 3.5 STEADY STATE CURVES: PERFORMANCE EVALUATION.
17. CHAPTER 6: Analysis of the DFIM Under Voltage Dips: 6.6 INFLUENCE OF THE ROTOR CURRENTS.
18. CHAPTER 3: Steady State of the Doubly Fed Induction Machine: 3.4 PER UNIT TRANSFORMATION.
19. CHAPTER 5: Testing the DFIM: 5.2 OFF-LINE ESTIMATION OF DFIM MODEL PARAMETERS.
20. CHAPTER 3: Steady State of the Doubly Fed Induction Machine: 3.3 OPERATION MODES ATTENDING TO SPEED AND POWER FLOWS.
21. CHAPTER 3: Steady State of the Doubly Fed Induction Machine: 3.2 EQUIVALENT ELECTRIC CIRCUIT AT STEADY STATE.
22. CHAPTER 6: Analysis of the DFIM Under Voltage Dips: 6.7 DFIM EQUIVALENT MODEL DURING VOLTAGE DIPS.
23. CHAPTER 7: Vector Control Strategies for Grid-Connected DFIM Wind Turbines: 7.6 CONTROL SOLUTIONS FOR GRID DISTURBANCES.
24. CHAPTER 6: Analysis of the DFIM Under Voltage Dips: 6.5 ASYMMETRICAL VOLTAGE DIPS.
25. CHAPTER 8: Direct Control of the Doubly Fed Induction Machine: 8.6 MULTILEVEL CONVERTER BASED PREDICTIVE DIRECT POWER AND DIRECT TORQUE CONTROL OF THE DOUBLY FED INDUCTION MACHINE AT CONSTANT SWITCHING FREQUENCY.
26. CHAPTER 7: Vector Control Strategies for Grid-Connected DFIM Wind Turbines: 7.7 SUMMARY.
27. CHAPTER 6: Analysis of the DFIM Under Voltage Dips: 6.4 THREE-PHASE VOLTAGE DIPS.
28. CHAPTER 7: Vector Control Strategies for Grid-Connected DFIM Wind Turbines: 7.5 VECTOR CONTROL BEHAVIOR UNDER VOLTAGE DIPS.
29. CHAPTER 7: Vector Control Strategies for Grid-Connected DFIM Wind Turbines: 7.4 VECTOR CONTROL BEHAVIOR UNDER UNBALANCED CONDITIONS.
30. CHAPTER 7: Vector Control Strategies for Grid-Connected DFIM Wind Turbines: 7.2 VECTOR CONTROL.
31. CHAPTER 8: Direct Control of the Doubly Fed Induction Machine: 8.8 SUMMARY.
32. CHAPTER 8: Direct Control of the Doubly Fed Induction Machine: 8.7 CONTROL SOLUTIONS FOR GRID VOLTAGE DISTURBANCES, BASED ON DIRECT CONTROL TECHNIQUES.
33. CHAPTER 7: Vector Control Strategies for Grid-Connected DFIM Wind Turbines: 7.3 SMALL SIGNAL STABILITY OF THE VECTOR CONTROL.
34. CHAPTER 8: Direct Control of the Doubly Fed Induction Machine: 8.5 PREDICTIVE DIRECT POWER CONTROL (P-DPC) OF THE DOUBLY FED INDUCTION MACHINE AT CONSTANT SWITCHING FREQUENCY.
35. CHAPTER 8: Direct Control of the Doubly Fed Induction Machine: 8.4 PREDICTIVE DIRECT TORQUE CONTROL (P-DTC) OF THE DOUBLY FED INDUCTION MACHINE AT CONSTANT SWITCHING FREQUENCY.
36. CHAPTER 8: Direct Control of the Doubly Fed Induction Machine: 8.3 DIRECT POWER CONTROL (DPC) OF THE DOUBLY FED INDUCTION MACHINE.
37. CHAPTER 8: Direct Control of the Doubly Fed Induction Machine: 8.2 DIRECT TORQUE CONTROL (DTC) OF THE DOUBLY FED INDUCTION MACHINE.
38. CHAPTER 10: Complementary Control Issues: Estimator Structures and Start-Up of Grid-Connected DFIM: 10.3 START-UP OF THE DOUBLY FED INDUCTION MACHINE BASED WIND TURBINE.
39. CHAPTER 10: Complementary Control Issues: Estimator Structures and Start-Up of Grid-Connected DFIM: 10.2 ESTIMATOR AND OBSERVER STRUCTURES.
40. CHAPTER 12: New Trends on Wind Energy Generation: 12.4 SUMMARY.
41. CHAPTER 11: Stand-Alone DFIM Based Generation Systems: 11.3 STATOR VOLTAGE CONTROL.
42. CHAPTER 11: Stand-Alone DFIM Based Generation Systems: 11.2 MATHEMATICAL DESCRIPTION OF THE STAND-ALONE DFIM SYSTEM.
43. CHAPTER 11: Stand-Alone DFIM Based Generation Systems: 11.1 INTRODUCTION.
44. CHAPTER 12: New Trends on Wind Energy Generation: 12.3 TECHNOLOGICAL TRENDS: HOW THEY CAN BE ACHIEVED.
45. CHAPTER 11: Stand-Alone DFIM Based Generation Systems: 11.4 SYNCHRONIZATION BEFORE GRID CONNECTION BY SUPERIOR PLL.
46. CHAPTER 12: New Trends on Wind Energy Generation: 12.2 FUTURE CHALLENGES FOR WIND ENERGY GENERATION: WHAT MUST BE INNOVATED.
47. CHAPTER 9: Hardware Solutions for LVRT: 9.2 GRID CODES RELATED TO LVRT.
48. CHAPTER 9: Hardware Solutions for LVRT: 9.6 SUMMARY.
49. CHAPTER 9: Hardware Solutions for LVRT: 9.5 OTHER PROTECTION TECHNIQUES.
50. CHAPTER 1: Introduction to A Wind Energy Generation System: 1.8 INTRODUCTION TO THE NEXT CHAPTERS.
Catalog
Books, media, physical & digital resources
Discovery Service for Jio Institute Digital Library
For full access to our library's resources, please sign in.