FURTHER READING PROBLEMS AND SIMULATIONS
8
Part II: Steady‐State Operation of ac Machines
6 Using Space Vectors to Analyze ac Machines
6‐1 INTRODUCTION
6‐2 SINUSOIDALLY DISTRIBUTED STATOR WINDINGS
6‐3 THE USE OF SPACE VECTORS TO REPRESENT SINUSOIDAL FIELD DISTRIBUTIONS IN THE AIR GAP
6‐4 SPACE‐VECTOR REPRESENTATION OF COMBINED TERMINAL CURRENTS AND VOLTAGES
6‐5 BALANCED SINUSOIDAL STEADY‐STATE EXCITATION (ROTOR OPEN‐CIRCUITED)
6‐6 REVIEW QUESTIONS
REFERENCES
FURTHER READING
PROBLEMS
7 Space Vector Pulse‐Width‐Modulated (SV‐PWM) Inverters
7‐1 INTRODUCTION
7‐2 SYNTHESIS OF STATOR VOLTAGE SPACE VECTOR
9 Part III: Vector Control of ac Machines 11 Induction Machine Equations in Phase Quantities: Assisted by Space Vectors 11‐1 INTRODUCTION 11‐2 SINUSOIDALLY DISTRIBUTED STATOR WINDINGS 11‐3 STATOR INDUCTANCES (ROTOR OPEN‐CIRCUITED) 11‐4 EQUIVALENT WINDINGS IN A SQUIRREL‐CAGE ROTOR 11‐5 MUTUAL INDUCTANCES BETWEEN THE STATOR AND THE ROTOR PHASE WINDINGS 11‐6 REVIEW OF SPACE VECTORS 11‐7 FLUX LINKAGES