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首页> 外文期刊>International Transactions on Electrical Energy Systems >Model predictive speed control of five‐phase permanent magnet synchronous generator‐based wind generation system via wind‐speed estimation
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Model predictive speed control of five‐phase permanent magnet synchronous generator‐based wind generation system via wind‐speed estimation

机译:基于风速估计的五相永磁同步发电机风力发电模型预测速度控制

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Accurate wind-speed measure along with an effective control technology is an important aspect to attain optimal wind power. This paper proposes a sensorless maximum power point tracking (MPPT) algorithm that estimates the effective wind speed without an anemometer to reduce wind-turbine installation cost and improve the overall efficiency. This algorithm depends on the aerodynamic torque power coefficient approximation to the third-order polynomial. This paper investigates different control schemes of a 1.5-MW grid-tied five-phase permanent magnet synchronous generator (PMSG) based, a variable-speed wind-energy conversion system (VS-WECS). To eradicate the limitations of the proportional-integral (PI) controller as a speed controller, model predictive controller (MPC) is implemented as a replacement of PI controller. The MPC is employed to track the rotor speed to the optimal speed. Both the PI and the MPC are designed and deliberated to satisfy the obedient performance of the speed control loop. Moreover, a comparative study of speed control schemes is performed between the conventional PI controller and the MPC. Performance of the proposed control schemes is validated using the MATLAB/SIMULINK. Simulation results show the superiority of MPC compared with the conventional PI controller and the validity of the MPC as a vital solution for drawbacks of the PI controller.
机译:准确的风速测量以及有效的控制技术是获得最佳风能的重要方面。本文提出了一种无传感器最大功率点跟踪(MPPT)算法,该算法无需风速计即可估算有效风速,从而降低了风力涡轮机的安装成本并提高了整体效率。该算法取决于气动扭矩功率系数近似于三阶多项式。本文研究了基于1.5兆瓦并网五相永磁同步发电机(PMSG),变速风能转换系统(VS-WECS)的不同控制方案。为了消除比例积分(PI)控制器作为速度控制器的局限性,模型预测控制器(MPC)被实现为PI控制器的替代品。 MPC用于跟踪转子速度到最佳速度。 PI和MPC的设计和审议均符合速度控制回路的顺从性能。此外,在传统的PI控制器和MPC之间进行了速度控制方案的比较研究。使用MATLAB / SIMULINK验证了所提出的控制方案的性能。仿真结果表明,与传统的PI控制器相比,MPC的优越性以及MPC作为PI控制器缺点的重要解决方案的有效性。

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