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Modeling and Stability Analysis of a Direct-Drive Direct-Grid Slip–Synchronous Permanent-Magnet Wind Generator

机译:直接驱动直接电网滑移-同步永磁风力发电机的建模与稳定性分析

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摘要

In order to simplify and increase the reliability of wind generators, a new type of a direct-drive directly grid-connected wind generator known as a slip–synchronous permanent-magnet generator (SS-PMG) is proposed. It consists of two integrated generating units, i.e., a directly turbine-connected slip PMG unit and a directly grid-connected PM synchronous generator unit. The main aim of this paper is to determine if this generator is stable under transient wind turbine and grid conditions. A transfer function model is developed to evaluate the dynamic performance of the wind generator system. The transient response of a single 15-kW grid-connected system is evaluated. It is shown that the generator is very stable under transient turbine torque conditions. Furthermore, it acts as a filter to prevent voltage flickering due to oscillatory turbine pulsations. A very important design aspect to take into account is the torque ripple characteristics of the slip PM generator as torque ripple can be transferred to the grid current under certain conditions. Simulated and dynamically measured results are shown for a series of 15-kW SS-PMG prototypes.
机译:为了简化并提高风力发电机的可靠性,提出了一种新型的直接驱动直接并网风力发电机,称为滑动同步永磁发电机(SS-PMG)。它由两个集成式发电机组组成,即直接与涡轮相连的滑差PMG单元和直接与电网相连的PM同步发电机单元。本文的主要目的是确定该发电机在瞬态风力涡轮机和电网条件下是否稳定。建立了传递函数模型来评估风力发电机系统的动态性能。评估了一个15 kW并网系统的瞬态响应。结果表明,发电机在瞬态涡轮转矩条件下非常稳定。此外,它还可以用作滤波器,以防止由于涡轮机振荡而引起的电压闪变。要考虑的一个非常重要的设计方面是滑差式永磁发电机的转矩波动特性,因为在某些情况下转矩波动可以传递到电网电流。显示了一系列15 kW SS-PMG原型的仿真结果和动态测量结果。

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