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Start-up system design for small scale autonomous DFIG wind turbine

机译:小规模自主DFIG风力涡轮机的启动系统设计

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摘要

Autonomous wind systems are becoming promising since they provide new and innovative solutions to non-electrified areas. Start-up procedures for this wind systems requires some care to ensure electricity availability, to ovoid overloads and to reduce electrical and mechanical stress that affect lifetime of system components. In this context, this paper deals with an enhanced start-up system for small scale autonomous wind systems based on doubly fed induction generator. With the proposed start-up system, transient magnetizing current value is maintained under rated rotor current value to ensure smooth start-up process. Start-up algorithm guarantees the reach of a stable system functioning. Suggested topology, that includes a supercapacitor as a supplementary source, can be disconnected once wind system boots. Predictive controllers are used to ensure fast response. An energy management system is developed to monitor power flow. Considered model and control strategy of each system component, as well as start-up process are presented. Simulation results prove the effectiveness of the proposed start-up system.
机译:自主风系统正在成为有希望的,因为它们为非电气化区域提供了新的和创新的解决方案。该风系统的启动程序需要一些小心确保电力可用性,卵形过载,并降低影响系统组件寿命的电气和机械应力。在此背景下,本文涉及基于双馈感应发电机的小型自治风系统增强的启动系统。利用所提出的启动系统,瞬态磁化电流值在额定转子电流值下保持,以确保平滑的启动过程。启动算法保证稳定系统功能的范围。建议的拓扑结构包括超级电容器作为补充源,一旦风系统靴子就可以断开连接。预测控制器用于确保快速响应。开发了一种能量管理系统来监控电力流量。考虑了每个系统组件的模型和控制策略,以及呈现了启动过程。仿真结果证明了提出的启动系统的有效性。

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