Position Sensorless Control Techniques for Permanent Magnet Synchronous Machine Drives, 1st ed. 2020

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Language: English

158.24 €

In Print (Delivery period: 15 days).

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Position Sensorless Control Techniques for Permanent Magnet Synchronous Machine Drives
Publication date:
Support: Print on demand

158.24 €

In Print (Delivery period: 15 days).

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Position Sensorless Control Techniques for Permanent Magnet Synchronous Machine Drives
Publication date:
298 p. · 15.5x23.5 cm · Paperback
The book focuses on position sensorless control for PMSM drives, addressing both basic principles and experimental evaluation. It provides an in-depth study on a number of major topics, such as model-based sensorless control, saliency-based sensorless control, position estimation error ripple elimination and acoustic noise reduction. Offering a comprehensive and systematic overview of position sensorless control and practical issues it is particularly suitable for readers interested in the sensorless control techniques for PMSM drives. The book is also a valuable resource for researchers, engineers, and graduate students in fields of ac motor drives and sensorless control.
Basic Structure and Mathematical Model.- Introduction of PMSM Control Methods.- Saliency-Based Sensorless Control for PMSM Drives.- Pseudo-Random-Frequency Signal Injection for Acoustic Reduction.- Model-based Sensorless Control for PMSM Drives.- Position Estimation Error Ripple Elimination for Model-Based Method.- Low Frequency Ratio Sensorless Control for High Speed PMSM Drives.- Motor Parameter Self-Commissioning at Standstill.- Practical Issues of Sensorless Control for PMSM Drives.
Addresses position sensorless control for PMSM drives both in theory and experimental evaluation Comprehensively studies model-based sensorless control and saliency-based control Presents the latest research results in position-estimation error-ripple elimination and pseudo-random-frequency injection-based acoustic noise reduction Provides an in-depth discussion of practical issues, such as dynamic performance improvement and efficiency optimization control for sensorless control