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Adaptive SDRE based nonlinear sensorless speed control for PMSM drives

机译:基于自适应SDRE的PMSM驱动器非线性无传感器速度控制

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摘要

Field orientation or vector control is an advanced technique used for the development of high-performance permanent magnet synchronous motor (PMSM) drives. In this paper, a field-oriented adaptive nonlinear control for PMSM drives is presented for sensorless control of the speed and field of the motor, simultaneously. The proposed approach is based on a state-dependent Riccati equation (SDRE) control technique and its formulation utilizes a gradient-based neural-like system for online computation. The unknown parameters of the PMSM drive, that is, stator resistance and load torque, as well as the speed of the motor, are estimated using an extended Kalman filter (EKF) to eliminate the mechanical sensors. The resulting adaptive algorithm is simple and fast and is easily applicable to real-time control of PMSM drives. The efficacy of the proposed approach for sensorless control of PMSM drives is demonstrated through an illustrative simulation for the proof of concept.
机译:磁场定向或矢量控制是用于开发高性能永磁同步电动机(PMSM)驱动器的先进技术。在本文中,提出了一种针对永磁同步电机驱动器的面向磁场的自适应非线性控制,用于同时对电动机的速度和磁场进行无传感器控制。所提出的方法基于状态依赖的Riccati方程(SDRE)控制技术,其公式化利用基于梯度的类神经系统进行在线计算。 PMSM驱动器的未知参数(即定子电阻和负载转矩以及电动机的速度)使用扩展的卡尔曼滤波器(EKF)来估算,以消除机械传感器。所得的自适应算法简单,快速,可轻松应用于PMSM驱动器的实时控制。通过概念验证的说明性仿真证明了所提出方法对PMSM驱动器进行无传感器控制的功效。

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