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High-gain observer-based sensorless control of a flywheel energy storage system for integration with a grid-connected variable-speed wind generator

机译:基于高增益观测器的无传感器控制飞轮储能系统,用于集成与网格连接的变速风力发电机

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This paper introduces an induction machine-based flywheel energy storage system (FESS) for direct integration with a variable-speed wind generator (VSWG). The aim is to connect the FESS at the DC bus level of a permanent magnet synchronous generator-based VSWG in order to stabilize the DC bus voltage as well as the power flowing into the grid. A rotor flux-oriented control strategy is proposed for the FESS converter based on the actual speed of the flywheel rotor. Since mechanical speed sensors are prone to failure and increase the maintenance cost of the system, a sensorless technique is proposed to estimate the rotor speed through a specially synthesized high-gain observer (HGO). The proposed observer achieves accurate tracking of the flywheel speed and flux and reduces the adverse effects of variations in the rated rotor resistance. Simulation results obtained using the MATLAB-Simulink environment are presented to illustrate the theoretical synthesis and analysis of the proposed FOC and sensorless HGO control strategies.
机译:本文介绍了一种基于机器的飞轮储能系统(FES),用于直接与变速风力发电机(VSWG)进行直接集成。目的是将FES连接在基于永磁同步发电机的VSWG的直流总线电平,以稳定直流母线电压以及流入电网的功率。基于飞轮转子的实际速度,提出了对面向转子磁通磁通控制策略。由于机械速度传感器容易出现故障并提高系统的维护成本,因此提出了一种无传感器技术来通过专门合成的高增益观测器(HGO)来估计转子速度。所提出的观察者可以准确地跟踪飞轮速度和助焊剂,并降低额定转子电阻变化的不利影响。提出了使用MATLAB-SIMULINK环境获得的仿真结果,以说明所提出的FOC和无传感器HGO控制策略的理论合成和分析。

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