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Intelligent proportional-integral sliding mode control of wind turbine systems based particle swarm optimisation

机译:基于粒子群优化的风力涡轮机系统智能比例整体滑动模式控制

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This paper presents a robust intelligent proportional-integral sliding mode controller for a variable speed wind turbine (VSWT). The main objective of the controller is to optimise the energy captured from the wind, and minimise the mechanical stress in the system. In order to guarantee the wind power capture optimisation without any chattering problems, this study propose to combine the sliding mode control (SMC), proportional integral (PI) control and particle swarm optimisation (PSO) algorithm. The PSO technique with efficient global search is used to optimise the PI and SMC parameters simultaneously to control the system trajectories to a sliding manifold that determines the system performance. The stability of the system using this controller is shown by the Lyapunov theory. The simulation results of the proposed PSO-PI based SMC (PSO-PISMC) method are compared with the PSO-I based SMC (PSO-ISMC) and the conventional PSO based SMC (PSO-SMC). The comparison results reveal that the proposed controller is more effective in reducing the tracking error and chattering. In addition, the controller shows more robustness against uncertainties and faster transient response of the system with reduced steady state error.
机译:本文介绍了一种用于变速风力涡轮机(VSWT)的鲁棒智能比例整体滑动模式控制器。控制器的主要目的是优化从风中捕获的能量,并最大限度地减少系统中的机械应力。为了保证风力捕获优化而没有任何抖动问题,本研究建议将滑模控制(SMC),比例积分(PI)控制和粒子群优化(PSO)算法组合。具有有效全局搜索的PSO技术用于优化PI和SMC参数,同时控制系统轨迹到确定系统性能的滑动歧管。使用该控制器的系统的稳定性由Lyapunov理论显示。将所提出的PSO-PI基于SMC(PSO-PIMC)方法的仿真结果与PSO-I基于SMC(PSO-ISMC)和传统的PSO基于SMC(PSO-SMC)进行比较。比较结果表明,所提出的控制器在减少跟踪误差和抖动方面更有效。此外,控制器的不确定度和系统的更快瞬态响应具有降低的稳态误差。

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