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Sensorless Predictive Torque Control of induction motor by means of reduced order observer

机译:通过降阶观测器实现感应电动机的无传感器预测转矩控制

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In this paper a sensorless Predictive Torque Control (PTC) is proposed. The reduced order observer is used for stator flux estimation. The prediction model and also the reduced order observer are reinforced by a proposed PI offset compensation scheme for accurate flux and torque prediction and also estimation without the need for speed sensor. Cost function base predictive control is exploited. Method of examining feasible Voltage Vectors (VVs) is used in order to find which VV minimizes the cost function. The selected VV is exerted during the calculated portion of the control interval in order to minimize the torque ripples. The rest of control interval is allocated to Zero Voltage (ZV). The prediction and estimation of the controlled state are based on the offset compensated sensorless models of the induction motor and inverter. The proposed method is verified by simulation results in mean and low speed region.
机译:本文提出了一种无传感器预测转矩控制(PTC)。降阶观测器用于定子磁链估计。预测模型以及降阶观测器均通过提出的PI偏移补偿方案进行了增强,以实现精确的磁通量和转矩预测,并且无需速度传感器即可进行估算。利用了基于成本函数的预测控制。为了检查哪个VV使成本函数最小化,使用了检查可行电压矢量(VV)的方法。在控制间隔的计算部分中施加选定的VV,以最大程度地减小转矩波动。其余的控制间隔分配给零电压(ZV)。对控制状态的预测和估计基于感应电动机和逆变器的补偿补偿的无传感器模型。仿真结果验证了该方法的有效性。

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