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Sensorless induction machine observation with nonlinear magnetic characteristic

机译:具有非线性磁特性的无传感器感应电机观测

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This paper addresses the problem of state estimation in induction motors. Generally, the motor observer design has been dealt based on standard models neglecting the saturation effect in the magnetic characteristic. As a matter of fact, magnetic saturation cannot be ignored especially when considering control strategies (speed and torque) that involve large flux variations. Such large flux variations are necessary to meet optimal operation conditions in the presence of wide range load torque changes. On the other hand, it is well known that use of mechanical (speed and torque) sensors entails reliability issues. In this paper, a new sensorless adaptive observer is designed for induction machine based on a model that accounts for the nonlinear feature in the magnetic circuit. The observer consists of two interconnected state-dependent gain observers and is formally shown to provide accurate estimates of the mechanical and magnetic variables using only stator current and voltage measurements.
机译:本文解决了感应电动机状态估计的问题。通常,基于标准模型处理了电机观测器设计,而忽略了磁特性中的饱和效应。实际上,尤其在考虑涉及较大磁通量变化的控制策略(速度和转矩)时,不能忽略磁饱和。在大范围负载转矩变化的情况下,为了满足最佳运行条件,必须有如此大的磁通量变化。另一方面,众所周知,使用机械(速度和扭矩)传感器会带来可靠性问题。在本文中,基于考虑磁路非线性特征的模型,为感应电机设计了一种新的无传感器自适应观测器。该观察器由两个相互连接的,与状态相关的增益观察器组成,并被正式显示为仅使用定子电流和电压测量值即可提供对机械和磁变量的准确估计。

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