Abstract:
State-of-the-art pulsewidth modulation techniques fail to give satisfactory results when high-bandwidth torque control is required at the low switching frequency of moder...Show MoreMetadata
Abstract:
State-of-the-art pulsewidth modulation techniques fail to give satisfactory results when high-bandwidth torque control is required at the low switching frequency of modern high-power AC machine drives. A novel current control method refers to precalculated optimal synchronous pulse patterns. These are used to generate specific current reference trajectories to be adapted on-line to the actual dynamic torque command. A fast tracking controller, operated in parallel to a conventional PI controller, minimizes the trajectory tracking error. The optimized current trajectories ensure maximum response and minimum harmonic distortion.<>
Published in: IEEE Transactions on Industry Applications ( Volume: 31, Issue: 5, Sept.-Oct. 1995)
DOI: 10.1109/28.464526
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Pulse Width ,
- Current Control ,
- Tracking Control ,
- Optimal Mode ,
- Current Trajectory ,
- Current Tracking ,
- Trajectory Tracking Control ,
- Synchronous Modulation ,
- Fast Current Control ,
- Fast Tracking Control ,
- Optimal Pulse Width Modulation ,
- Switching Frequency ,
- Current Reference ,
- Reference Trajectory ,
- Harmonic Distortion ,
- Optimal Pattern ,
- Low Switching Frequency ,
- Pulse Pattern ,
- Reference Signal ,
- Machine Model ,
- Fundamental Current ,
- Current Error ,
- Current Vector ,
- Current Harmonics ,
- Steady-state Current ,
- Space Vector Modulation ,
- Error Dynamics ,
- Actual Trajectory ,
- Fundamental Voltage ,
- Trajectory Control
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Pulse Width ,
- Current Control ,
- Tracking Control ,
- Optimal Mode ,
- Current Trajectory ,
- Current Tracking ,
- Trajectory Tracking Control ,
- Synchronous Modulation ,
- Fast Current Control ,
- Fast Tracking Control ,
- Optimal Pulse Width Modulation ,
- Switching Frequency ,
- Current Reference ,
- Reference Trajectory ,
- Harmonic Distortion ,
- Optimal Pattern ,
- Low Switching Frequency ,
- Pulse Pattern ,
- Reference Signal ,
- Machine Model ,
- Fundamental Current ,
- Current Error ,
- Current Vector ,
- Current Harmonics ,
- Steady-state Current ,
- Space Vector Modulation ,
- Error Dynamics ,
- Actual Trajectory ,
- Fundamental Voltage ,
- Trajectory Control