Paper
1 August 2022 Analysis of harmonic effects of high voltage circuit breaker asynchronous motors under different frequency of SVPWM vector control
Rui Li, Yufeng Lu, Yi Su, Lei Zhang
Author Affiliations +
Proceedings Volume 12257, 4th International Conference on Information Science, Electrical, and Automation Engineering (ISEAE 2022); 1225749 (2022) https://doi.org/10.1117/12.2640210
Event: 4th International Conference on Information Science, Electrical, and Automation Engineering (ISEAE 2022), 2022, Guangzhou, China
Abstract
SVPWM vector control highly optimizes the harmonic, and has the characteristics of fast dynamic response and small torque ripple. For this reason, under the SVPWM vector control strategy, only the carrier frequency is changed to simulate and analyze the influence of different carrier frequencies on harmonics. This paper first analyzes the sampling principle of SVPWM, and establishes the model of carrier frequency and harmonics relationship. Then, this paper simulates the asynchronous motor system under SVPWM vector control, analyzes the stator current, rotor speed and torque waveform, and can get the characteristics of low harmonics, fast dynamic response and small torque ripple.Finally, the A-phase stator current is taken as an example.Only the carrier frequency is changed to take 3KHz, 4KHz and 5KHz for FFT analysis. Comparing the THD of the three,it can be concluded that the larger the carrier frequency, the smaller the THD, the smaller the harmonic loss.
© (2022) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Rui Li, Yufeng Lu, Yi Su, and Lei Zhang "Analysis of harmonic effects of high voltage circuit breaker asynchronous motors under different frequency of SVPWM vector control", Proc. SPIE 12257, 4th International Conference on Information Science, Electrical, and Automation Engineering (ISEAE 2022), 1225749 (1 August 2022); https://doi.org/10.1117/12.2640210
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KEYWORDS
Control systems

Modulation

Computer simulations

Switching

Control systems design

Inductance

Magnetism

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