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Predictive current limiter for LQ based control of AC drives

机译:预测电流限制器,用于基于LQ的交流变频器控制

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摘要

Linear quadratic control (LQ) is a popular technique for design of control strategy. Its main advantage is the ability to optimize a quadratic cost function on a very long horizon (potentially infinite). In its basic form, it requires linear system which is not the case in many AC drive control problem. However, various approximations, such as gain scheduling or state dependent Riccatti Equation (SDRE) approach, were proposed and applied to this task. They have certain advantages, however, they all still suffer from the essential problem of LQ approaches, namely its inability to respect hard constraints on the system state variable. In this paper, we interpret the LQ controller as an approximate solution of the constrained problem and use the limited lookahead approach of approximate dynamic programming to introduce the constraint on the amplitude of the drive currents. This yields a constrained quadratic optimization problem, for which we design an iterative solution. Performance of the algorithm is tested in simulation and experimentally on a laboratory prototype of a 10.7 kW PMSM drive.
机译:线性二次控制(LQ)是设计控制策略的流行技术。它的主要优点是能够在很长的时间范围内(可能无限)优化二次成本函数。从根本上讲,它需要线性系统,而在许多交流驱动控制问题中却并非如此。但是,提出了各种近似方法,例如增益调度或状态相关的Riccatti方程(SDRE)方法,并将其应用于此任务。它们具有某些优点,但是,它们仍然遭受LQ方法的本质问题,即它无法遵守对系统状态变量的严格约束。在本文中,我们将LQ控制器解释为受约束问题的近似解,并使用近似动态编程的有限先行方法引入对驱动电流幅度的约束。这产生了一个约束二次优化问题,为此我们设计了一个迭代解决方案。该算法的性能在仿真中和在10.7 kW PMSM驱动器的实验室原型上进行了实验测试。

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