Sahib Mouayad A, Ahmed Bestoun S
Software Engineering Department, College of Engineering, Salahaddin University-Hawler, Erbil, Iraq.
J Adv Res. 2016 Jan;7(1):125-34. doi: 10.1016/j.jare.2015.03.004. Epub 2015 Apr 3.
In PID controller design, an optimization algorithm is commonly employed to search for the optimal controller parameters. The optimization algorithm is based on a specific performance criterion which is defined by an objective or cost function. To this end, different objective functions have been proposed in the literature to optimize the response of the controlled system. These functions include numerous weighted time and frequency domain variables. However, for an optimum desired response it is difficult to select the appropriate objective function or identify the best weight values required to optimize the PID controller design. This paper presents a new time domain performance criterion based on the multiobjective Pareto front solutions. The proposed objective function is tested in the PID controller design for an automatic voltage regulator system (AVR) application using particle swarm optimization algorithm. Simulation results show that the proposed performance criterion can highly improve the PID tuning optimization in comparison with traditional objective functions.
在PID控制器设计中,通常采用优化算法来搜索最优控制器参数。该优化算法基于由目标函数或代价函数定义的特定性能准则。为此,文献中提出了不同的目标函数来优化受控系统的响应。这些函数包括众多加权的时域和频域变量。然而,要获得最优的期望响应,很难选择合适的目标函数或确定优化PID控制器设计所需的最佳权重值。本文提出了一种基于多目标帕累托前沿解的新的时域性能准则。所提出的目标函数在使用粒子群优化算法的自动电压调节器系统(AVR)应用的PID控制器设计中进行了测试。仿真结果表明,与传统目标函数相比,所提出的性能准则能够显著改善PID整定优化。