Rotor position self-sensing of a sensorless permanent synchronous motor based on fluctuating high-frequency voltage signal injection and Kalman filter
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摘要: 永磁同步電機的運動控制是一個強耦合的非線性動態控制系統,而且在控制過程中測量數據帶有噪聲,采用傳統的線性控制理論很難達到系統要求.提出一種非線性系統的隨機觀測器——卡爾曼位置觀測器,它用于高頻信號注入法下的轉子位置檢測.利用脈動高頻信號注入法進行永磁同步電機轉子位置自檢測,將產生的高頻載波電流解調后,送入設計的卡爾曼位置觀測器,可有效去除干擾噪聲,準確觀測出轉子位置.仿真實驗結果表明,在有系統噪聲和測量噪聲的情況下,基于卡爾曼位置觀測器的脈動高頻信號注入法能夠精確地跟蹤轉子位置.Abstract: The traditional linear control theory can not meet the system requirement of a permanent synchronous motor (PMSM) for its motion control is a coupling and nonlinear control system and measurement noise also exists in the control system. A method to estimate the rotor position of PMSM was presented based on fluctuating high-frequency voltage signal injection and Kalman rotor-position-estimator. When a fluctuating high-frequency voltage signal was injected into stator winding, the corresponding current signal containing the information of rotor position was demodulated and delivered into the Kalman rotor-position-estimator. Then the rotor position would be detected accurately. Simulation results verified the method can track the rotor position accurately, even though system noise and measurement noise exist in the control system.
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