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Stability analysis of adjustable-speed induction-motor drive using genetic algorithm

机译:遗传算法在调速感应电动机驱动中的稳定性分析

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Adjustable-speed induction-motor drives can experience sustained oscillations at low frequencies and light loads. It is thus advantageous to ensure their reliable operation by closely monitoring their performances against any potential loss of stability occurring during operation. This paper proposes a genetic algorithm (GA) with conserving for mapping the instability region of an induction-motor drive, by identifying all its eigenvalues with zero real-parts in one execution. Due to its simplicity, the proposed GA can also be individually executed for studying the stability impacts of any perceivable parametric variation occurring during operation. With this, the operator will be able to monitor any variation of instability region during operation, track undesirable operational variations, identify worst-case disturbances occurring during operation, synthesize appropriate preventive/ corrective remedial actions and maintain low-risk operation. The proposed GA is applied to an induction-motor drive with constant V/Hz control. Case studies are conducted by using the proposed GA for assessing the stability impacts of changing V/Hz control and changing induction-motor parameters occurring during operation.
机译:可调速感应电动机驱动器在低频和轻负载下会持续振荡。因此有利的是,通过密切监视它们的性能以防在运行期间发生任何潜在的稳定性损失,来确保它们的可靠运行。本文提出了一种遗传算法(GA),该算法通过在一次执行中识别零个实部的所有本征值,来映射感应电动机驱动器的不稳定性区域。由于其简单性,建议的GA也可以单独执行,以研究在运行过程中发生的任何可察觉的参数变化对稳定性的影响。这样,操作员将能够监视操作过程中不稳定区域的任何变化,跟踪不良的操作变化,识别操作过程中发生的最坏情况的干扰,综合适当的预防/纠正措施并保持低风险操作。拟议的遗传算法应用于具有恒定V / Hz控制的感应电动机驱动器。通过使用拟议的遗传算法进行案例研究,以评估在运行期间发生变化的V / Hz控制和变化的感应电动机参数对稳定性的影响。

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