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Sensorless explicit model predictive control of permanent magnet synchronous motors

机译:永磁同步电动机的无传感器显式模型预测控制

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The present paper deals with sensorless model predictive control of permanent magnet synchronous motors. The proposed explicit controllers consist in precomputed (optimal) state feedbacks that are selected according to the measured state using binary search-trees. This type of controller is well suited to obtain very fast control algorithms that impose high dynamic performance. The control scheme is based on two cascaded explicit model predictive controllers, one for the torque control another for the speed control. The nonlinearities of the motor dynamics that are due to the speed are taken into account into the torque controller derivation. The resulting adaptive closed-loop system presents a high dynamic performance for all operating points. A rotor speed and position observer is used to orient the control variables on the rotor flux without position sensor. The overall control scheme allows optimal use of the inverter and drive dynamic capabilities. The proposed concepts are validated experimentally.
机译:本文涉及永磁同步电动机的无传感器模型预测控制。所提出的显式控制器包括预计算的(最佳)状态反馈,该反馈根据使用二进制搜索树的测量状态进行选择。这种类型的控制器非常适合于获得非常强的动态性能的非常快速的控制算法。该控制方案基于两个级联的显式模型预测控制器,一个用于转矩控制,另一个用于速度控制。在转矩控制器的推导中考虑了由于速度引起的电机动力学的非线性。所得的自适应闭环系统为所有工作点提供了很高的动态性能。转子速度和位置观测器用于在没有位置传感器的情况下将控制变量定向到转子磁通上。总体控制方案可以优化逆变器的使用和驱动动态能力。提出的概念已通过实验验证。

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