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Optimal controller design of a doubly-fed induction generator wind turbine system for small signal stability enhancement

机译:双馈感应发电机风力涡轮机系统的优化控制器设计,可增强小信号稳定性

摘要

Multi-objective optimal controller design of a doubly-fed induction generator (DFIG) wind turbine system using differential evolution (DE) is presented. A detailed mathematical model of DFIG wind turbine with a closed-loop vector control system is developed. Based on this, objective functions addressing the steady-state stability and dynamic performance at different operating conditions are implemented to optimise the controller parameters of both the rotor and grid-side converters. A superior ε-constraint method and method of adaptive penalties are applied to handle the multi-objective problem and the constraint with DE, respectively. Eigenvalue analysis and time-domain simulations are performed on a single machine infinite bus system as well as a nine-bus multi-machine system with two DFIG wind turbines to illustrate the control performance of the DFIG wind turbine with the optimised controller parameters. The electric energy productions of the studied DFIG wind turbine system with and without optimised controller parameters under turbulent wind speed are also demonstrated.
机译:提出了基于差分进化算法的双馈感应风力发电机系统多目标最优控制器设计。建立了具有闭环矢量控制系统的双馈风力发电机的详细数学模型。基于此,实现了针对不同运行条件下的稳态稳定性和动态性能的目标函数,以优化转子和电网侧变流器的控制器参数。分别采用一种优良的ε约束方法和自适应惩罚方法分别处理多目标问题和DE约束问题。在具有两个DFIG风力发电机的单机无限总线系统和九总线多机器系统上执行特征值分析和时域仿真,以说明具有优化控制器参数的DFIG风力发电机的控制性能。还演示了在湍流风速下,带有和不带有优化控制器参数的DFIG风力发电机系统的电能产生。

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