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Field Oriented Control of Surface Mount Permanent Magnet Synchronous Machine with Non Linear Observer for Continuous Rotor Position Estimation

机译:具有非线性观测器的表面安装永磁同步电机的磁场定向控制,用于连续转子位置估计

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Vector control of Permanent magnet synchronous machine (PMSM) is executed with the knowledge of rotor angle for stator commutation. The paper proposes a method to utilize the feature of obtaining continuous rotor position from the Ortega non-linear observer to be used in a Field oriented control of PMSM. In addition, the speed information is necessary for current decoupling in Field oriented control. The sensorless algorithm implemented also uses a Phase lock loop (PLL) to estimate the speed, instead of numerical differentiation. Unlike the passivity observers which can give only rotor positions, the implemented algorithm estimates continuous rotor angle and also the speed thus completely eliminating the need of encoders. The implemented observer algorithm is tested with a Field oriented controller for a 0.3 kW surface mount PMSM and tested in MATLAB/Simulink for its speed tracking capability under various operating conditions. The implemented control algorithm exhibited good tracking accuracies under almost all the operating conditions.
机译:永磁同步电机(PMSM)的矢量控制是在定子换相的转子角知识的基础上执行的。本文提出了一种利用从Ortega非线性观测器获得连续转子位置的特征的方法,该方法将用于PMSM的磁场定向控制中。此外,速度信息对于磁场定向控制中的电流解耦是必需的。实现的无传感器算法还使用锁相环(PLL)来估算速度,而不是进行数值微分。与只能给出转子位置的无源观测器不同,所实现的算法可估算连续的转子角度以及速度,从而完全消除了对编码器的需求。已实施的观察者算法已通过针对0.3 kW表面贴装PMSM的磁场定向控制器进行了测试,并在MATLAB / Simulink中针对各种运行条件下的速度跟踪能力进行了测试。所执行的控制算法在几乎所有操作条件下均表现出良好的跟踪精度。

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