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Algorithms of Fast Adaptive Compensation of Disturbance in Linear Systems with Arbitrary Input Delay

机译:具有任意输入时滞的线性系统中干扰的快速自适应补偿算法

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The problem of fast compensation of multisinusoidal disturbance affecting on linear time-invariant (LTI) plants with known parameters and arbitrary input delay is considered. The disturbance is modeled as unmeasurable bounded output of linear exosystem of known order but with unknown parameters. Disturbance compensation is provided by means of direct adaptive control with two schemes of adaptation algorithm. The first scheme is based on the standard gradient adaptation algorithm, while the second one uses modified adaptation algorithm with integral cost function and improved parametric convergence. The stability of the closed-loop system in presence of delay and integral action (due to direct adaptation) in the feedforward loop is ensured by appropriate modifications of the adaptation schemes. These modifications allow to remove the limitations on upper bounds on adaptation gains (gain margins) corresponding to certain upper bounds of time delays (delay margins). The performance of proposed schemes of disturbance compensation is demonstrated via simulation.
机译:研究了多正弦扰动对具有已知参数和任意输入延迟的线性时不变(LTI)设备的快速补偿问题。扰动被建模为已知阶数但参数未知的线性外系统的不可测量的有界输出。通过直接自适应控制和两种自适应算法方案来提供干扰补偿。第一种方案基于标准梯度自适应算法,而第二种方案则使用具有积分成本函数和改进的参数收敛性的改进的自适应算法。前馈回路中存在延迟和积分作用(由于直接适配)的情况下,闭环系统的稳定性可通过适当修改适配方案来确保。这些修改允许消除对与时间延迟的某些上限(延迟裕量)相对应的适应增益(增益裕量)的上限的限制。通过仿真证明了所提出的干扰补偿方案的性能。

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