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Performance of a reactive power-based adaptive estimation of inverse rotor time constant for vector controlled induction motor drives

机译:矢量控制感应电动机驱动器基于无功功率的逆转子时间常数自适应估计的性能

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摘要

A detail investigation on an adaptive estimation of rotor time constant is presented here. The adaptation mechanism forms a Model Reference Adaptive System (MRAS) for the online estimation of inverse rotor time constant for high performance Indirect Vector Controlled Induction Motor Drive. The instantaneous and steady state reactive powers are utilised in the proposed MRAS. A merit of the scheme is that the flux computation is not required in both the models (reference model and adjustable model) of MRAS. So, the low speed estimation problems like drift and saturation of integrator (related to flux estimation from voltage model) are overcome. The use of reactive power as a functional candidate of MRAS naturally makes the scheme independent of stator resistance. The workability of the proposed MRAS is verified through extensive simulation and experiment. The stability of the system is investigated and a study on the sensitivity to stator and rotor parameters is reported. The technique is simple and can be implemented in the existing indirect vector controlled system without any additional hardware.
机译:这里介绍了对转子时间常数的自适应估计的详细研究。自适应机制形成了模型参考自适应系统(MRAS),用于在线估算高性能间接矢量控制感应电动机驱动器的转子反时限常数。在提出的MRAS中利用了瞬时和稳态无功功率。该方案的优点是在MRAS的两个模型(参考模型和可调模型)中都不需要通量计算。因此,克服了低速估算问题,例如积分器的漂移和饱和度(与电压模型的磁通估算有关)。使用无功功率作为MRAS的功能候选方案自然会使该方案独立于定子电阻。通过广泛的仿真和实验验证了所提出的MRAS的可操作性。研究了系统的稳定性,并报告了对定子和转子参数的敏感性的研究。该技术很简单,可以在现有的间接矢量控制系统中实现,而无需任何其他硬件。

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