一种新的DFIG风电机组MPP运行控制器设计与分析

M. K. Bourdoulis, A. Alexandridis
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引用次数: 3

摘要

本文提出了一种简化且易于实现的DFIG风力发电系统MPP控制方案。特别考虑到系统在同步旋转dq参考系中工作在电压定向控制模式下的完全非线性模型,提出了级联q轴控制器方案和简单的比例d轴控制器方案。级联q轴控制器的内环不需要解耦网络,并用于实现所需的q轴电流阻尼。外环PI控制器通过连续跟踪转速到最优值来执行系统的MPP操作。它的结构稍微修改了一下,允许进行二阶线性系统分析。在对整个系统进行非线性分析时,考虑了内回路电流控制器,证明了系统的稳定性和收敛性。对2MW DFIG风力发电系统的大量仿真结果表明,该控制器提高了系统性能,并验证了该控制器的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new controller design and analysis of DFIG wind turbine systems for MPP operation
In this paper, a simplified and easily implemented MPP control scheme is proposed for DFIG wind turbine systems. In particular, taking into account the complete nonlinear model of the system in the synchronously rotating dq reference frame operating at the voltage oriented control mode, a cascaded q-axis controller scheme and a simple proportional d-axis controller are proposed. The inner-loop of the cascaded q-axis controller does not require decoupling networks and is used to achieve the desired q-axis current damping. The outer-loop PI controller enforces the MPP operation of the system by continuously tracking the rotating speed to the optimum. Its structure is slightly modified in a way that permits a second order linear system analysis. Stability and convergence to the equilibrium is proven by taking into account the inner-loop current controllers in the nonlinear analysis of the complete system. Extensive simulation results on a 2MW DFIG wind turbine system illustrate the enhanced system performance and verify the effectiveness of the controller.
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