用于柴油机原动机实时自适应控制的预测器

S. Roy, O. Malik, G. Hope
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引用次数: 7

摘要

动力原动机的自适应控制需要有效的建模和识别技术,这些技术必须具有良好的抗扰性能。由于计算的复杂性,现有的方法倾向于避免对输入死区时间进行显式建模。提出了两种不同的柴油机原动机建模方法。这些预测因子来自于对工厂的两个不同的最小二乘估计的结果。基于干扰抑制能力和计算复杂度,对推导出的预测模型进行了相互比较,并与各自的最小二乘模型进行了比较。大量的仿真研究表明,在严重的负荷扰动和较大的转速参考变化情况下,所得到的预测器收敛速度快,预测误差很小。对这两种方法进行了比较讨论。
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Predictors for application to real-time adaptive control of a diesel prime-mover
Adaptive control of a power prime-mover requires effective modeling and identification techniques that have good disturbance rejection properties. Existing methods tend to avoid explicit modeling of input dead-time due to resulting computational complexity. Two different approaches of modeling the diesel power prime-mover are presented. The predictors are derived from the results of two different least-squares estimates of the plant. The derived predictors are compared with each other, and with their respective least-squares models, on the basis of disturbance rejection capability and computational complexity. It is shown by extensive simulation studies that the predictors obtained converge quickly and operate with very small prediction error under severe load disturbances and large speed reference changes. A comparative discussion of the two methods is presented.<>
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