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Improving the control energy in model reference adaptive controllers using fractional adaptive laws

机译:使用分数自适应律提高模型参考自适应控制器中的控制能量

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This paper presents the analysis of the control energy consumed in model reference adaptive control (MRAC) schemes using fractional adaptive laws, through simulation studies. The analysis is focused on the energy spent in the control signal represented by means of the integral of the squared control input (ISI). Also, the behavior of the integral of the squared control error (ISE) is included in the analysis. The orders of the adaptive laws were selected by particle swarm optimization (PSO), using an objective function including the ISI and the ISE, with different weighting factors. The results show that, when ISI index is taken into account in the optimization process to determine the orders of adaptive laws, the resulting values are fractional, indicating that control energy of the scheme might be better managed if fractional adaptive laws are used.
机译:通过仿真研究,本文介绍了使用分数自适应定律分析模型参考自适应控制(MRAC)方案中消耗的控制能量。分析集中在通过平方控制输入(ISI)的积分表示的控制信号中消耗的能量上。此外,分析中还包括平方控制误差(ISE)积分的行为。使用包括ISI和ISE在内的目标函数,通过不同的加权因子,通过粒子群优化(PSO)选择自适应律的阶数。结果表明,在优化过程中考虑ISI指标来确定自适应律的阶数时,所得值是分数的,这表明如果使用分数自适应律,则可以更好地管理方案的控制能量。

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