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Encoderless model predictive control of back-to-back converter direct-drive permanent-magnet synchronous generator wind turbine systems

机译:反向转换器直接驱动永磁同步发电机风力涡轮机系统的无切换转换器模型预测控制

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This paper presents encoderless model predictive control scheme with time-varying sliding mode observer for a complete wind turbine system. The wind turbine system consists of a back-to-back converter (AC/DC/AC) and a direct-drive permanent-magnet synchronous generator (PMSG). We give a complete model of the system and present encoderless fixed-frequency model predictive direct torque control of the generator and finite-set model predictive direct power control of active and reactive power on the grid side. The sliding mode observer utilizes a time-varying switching gain and a time-varying cut-off frequency to estimate rotor position and rotor speed without chattering. The proposed strategy is illustrated by simulations as a first proof of concept. The simulation results show that the proposed strategy achieves fast torque control dynamics and highly decoupled control of active and reactive power.
机译:本文提出了具有时变滑模观测器的切割模型预测控制方案,用于完整风力涡轮机系统。 风力涡轮机系统由背对背转换器(AC / DC / AC)和直驱永磁同步发电机(PMSG)组成。 我们提供了一个完整的系统模型,并提供了机器侧的发电机和有限型模型预测直接电力控制的完整模型,对网格侧的主动和无功功率的有限模型预测直接功率控制。 滑动模式观察器利用时变的开关增益和时变截止频率来估计转子位置和转子速度而不抖动。 拟议的策略是通过模拟作为概念证明的思考来说明的。 仿真结果表明,该策略达到了快速扭矩控制动力学和高度去耦的主动和无功功率控制。

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