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Advanced control strategies for direct-drive PMSG wind turbine systems: Direct predictive torque control approaches

机译:直驱式PMSG风力发电机系统的高级控制策略:直接预测转矩控制方法

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Full power scale back-to-back power converter PMSG wind turbine system, with direct-drive configuration, is an attractive solution, particularly for off-shore wind energy applications. For such systems, (nonlinear) direct control, which requires neither a modulation process nor cascaded linear controllers, but will operate the system at very high control dynamics, is a very promising control class. In this work, we reviewed and experimentally assessed the classical (C-), the duty-optimal (DO-), the ripple-reduced (RR-) and the multi-vector direct model predictive torque control (MV-DMPTC) solutions to deal with the generator side control of grid-tied full power scale back-to-back power converter PMSG wind turbine systems. Their theoretical background, realizations and control performances are presented and discussed. The realizations and experimental assessments of all the discussed control approaches are carried out with a fully FPGA based realtime controller, at a lab-constructed test-bench. The resource usage and implementation complexity are provided. Comprehensive evaluation results are given at the end.
机译:具有直接驱动配置的全功率规模背靠背功率转换器PMSG风力涡轮机系统是一种有吸引力的解决方案,尤其是对于海上风能应用而言。对于这样的系统,(非线性)直接控制是一种非常有前途的控制类,它不需要调制过程也不需要级联线性控制器,但是将以很高的控制动态性来操作系统。在这项工作中,我们回顾并实验评估了经典(C-),最佳占空比(DO-),降低脉动(RR-)和多矢量直接模型预测转矩控制(MV-DMPTC)解决方案,处理并网全功率规模背靠背功率转换器PMSG风力发电机系统的发电机侧控制。介绍并讨论了它们的理论背景,实现和控制性能。所有讨论的控制方法的实现和实验评估都是在实验室构建的测试平台上使用完全基于FPGA的实时控制器进行的。提供了资源使用和实现复杂性。最后给出了综合评估结果。

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