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Tuning and Assessment of Proportional-Integral-Derivative Controller for an Automatic Voltage Regulator System Employing Local Unimodal Sampling Algorithm

机译:采用局部单峰采样算法的自动调压系统比例积分微分控制器的整定与评估

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摘要

This article presents an approach for obtaining proportional-integral-derivative controller parameters for an automatic voltage regulator system based on a local unimodal sampling optimization algorithm. A conventional integral time of squared error objective function and modified objective functions in terms of integral time of absolute error, integral of absolute error, integral of squared error, peak overshoot, and settling time with appropriate weighting factors are employed to tune the controller parameters. Different objective functions are employed to obtain optimized proportional-integral-derivative controller gains. Superiority of proposed technique over some recently published modern heuristic optimization techniques, such as artificial bee colony algorithm, particle swarm optimization algorithm, and differential evolution algorithm, for the same automatic voltage regulator system is demonstrated. Simulation results reveal that the proposed proportional-integral-derivative controlled automatic voltage regulator system tuned by the local unimodal sampling algorithm with modified objective function exhibits better performance in terms of settling time, peak overshoot, and stability. The robustness of the system tuned by the proposed algorithm is also studied satisfactorily by varying the time constants of the automatic voltage regulator system in the range of -50% to +50% in steps of 25%.
机译:本文提出了一种基于局部单峰采样优化算法的自动调压器系统比例积分微分控制器参数的获取方法。在绝对误差的积分时间,绝对误差的积分,平方误差的积分,峰值超调和具有适当加权因子的建立时间方面,使用常规的平方误差目标函数积分时间和修改后的目标函数来调整控制器参数。采用不同的目标函数来获得优化的比例-积分-微分控制器增益。对于同一自动电压调节器系统,证明了所提出的技术相对于一些最近发布的现代启发式优化技术的优势,例如人工蜂群算法,粒子群优化算法和差分进化算法。仿真结果表明,所提出的比例-积分-微分控制自动电压调节器系统由具有修正目标函数的局部单峰采样算法调整,在建立时间,峰值过冲和稳定性方面表现出更好的性能。通过以-25%的步长在-50%到+ 50%的范围内更改自动电压调节器系统的时间常数,还可以令人满意地研究通过该算法调整的系统的鲁棒性。

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