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Engineering modelling of wind turbine applied in real-time simulation with hardware-in-loop and optimising control

机译:带有硬件在环和优化控制的实时仿真中的风机工程建模

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In order to constantly improve the output characteristics of wind turbines, the HIL (Hardware In the Loop) experimental platform of wind turbines is built to optimize control. According to the product parameters of 1.5 MW direct-drive PMSG (Permanent Magnet Synchronous wind Generator) of Dongfang Electric Corporation (DEC), the simulation model of wind turbine is built in RTDS (Real Time Digital Simulator), and optimised by comparing with the wind speed-power curve of products, the simulation model of wind turbine with engineering accuracy can be obtained. Base on the engineering model and actual controller of products, the HIL experimental platform of wind turbines is built to optimise control. In the case of unbalanced or asymmetrical grid voltage, in order to make the wind turbine output be stable, the DDSOGI-PLL (direct Decoupling Double Second-Order Generalized Integral Phase-Locked Loop) is proposed to improve the performance of PLL, the active/ reactive current decoupling algorithm based on positive and negative sequence voltage orientation respectively is proposed to eliminate the negative sequence current to maintain a constant output power. The effectiveness of algorithm is verified by the HIL experimental platform, the active power output of wind turbine remains constant, the grid-connected adaptability of wind turbines is improved significantly.
机译:为了不断改善风力涡轮机的输出特性,构建了风力涡轮机的HIL(硬件在环)实验平台来优化控制。根据东方电气公司(DEC)的1.5 MW直驱永磁同步风力发电机(PMSG)的产品参数,在RTDS(实时数字仿真器)中构建了风力涡轮机的仿真模型,并通过与RTDS的比较进行了优化。得出产品的风速-功率曲线,得到具有工程精度的风力机仿真模型。根据产品的工程模型和实际控制器,构建了风力发电机的HIL实验平台,以优化控制。在电网电压不平衡或不对称的情况下,为了使风力涡轮机输出稳定,建议采用DDSOGI-PLL(直接解耦双二阶广义积分锁相环)来提高PLL的性能。提出了分别基于正序和负序电压方向的无功/无功电流去耦算法,消除了负序电流,以保持恒定的输出功率。通过HIL实验平台验证了该算法的有效性,风力发电机的有功输出保持恒定,风力发电机的并网适应性大大提高。

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