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Variable structure direct torque control of encoderless synchronous reluctance motor drives with maximized efficiency

机译:无编码器同步磁阻电机驱动器的可变结构直接转矩控制,效率最大化

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In this paper, a flexible DTC based on variable structure approach and space vector modulation is presented for encoderless Synchronous Reluctance Motor (SynRM) Drives. According to this method, a sliding mode-plus-PI controller is designed for torque and flux control in stator flux reference frame, respectively. The proposed controller is able to reduce the torque, flux, current and speed pulsations during steady-state behavior while the fast response and robustness merits of the classic DTC are preserved. In addition, an on-line adaptive loss minimization controller (ALMC) for SynRM drives is introduced. The ALMC provides a novel pattern of change in stator flux magnitude to achieve a minimum motor input power at any operating condition. The operating of the ALMC results in a smooth and fast loss minimization. Very low speed estimation (5 r/min) is satisfied by the elimination of the voltage sensors' dc offset. The simulation and experimental results obtained verify that the encoderless efficiency-optimized VS-DTC proposed for SynRM drives presents a good performance with minimized number of dependent parameters.
机译:本文针对无编码器同步磁阻电动机(SynRM)驱动器,提出了一种基于可变结构方法和空间矢量调制的灵活DTC。根据此方法,设计了一种滑模加PI控制器,分别用于定子磁链参考系中的转矩和磁链控制。所提出的控制器能够在稳态行为期间减小转矩,磁通,电流和速度脉动,同时保留了传统DTC的快速响应和鲁棒性优点。此外,还推出了用于SynRM驱动器的在线自适应损耗最小化控制器(ALMC)。 ALMC提供了一种新颖的定子磁通量变化模式,可以在任何工作条件下实现最小的电动机输入功率。 ALMC的运行可实现平稳,快速的损耗最小化。通过消除电压传感器的直流偏移,可以实现极低的速度估算(5 r / min)。获得的仿真和实验结果验证了为SynRM驱动器建议的无编码器效率优化的VS-DTC在具有最少数量的相关参数的情况下表现出良好的性能。

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