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Flexible control of small wind turbines with grid failure detection operating in stand-alone and grid-connected mode

机译:具有独立和并网模式的电网故障检测功能,可灵活控制小型风力涡轮机

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This paper presents the development and test of a flexible control strategy for an 11-kW wind turbine with a back-to-back power converter capable of working in both stand-alone and grid-connection mode. The stand-alone control is featured with a complex output voltage controller capable of handling nonlinear load and excess or deficit of generated power. Grid-connection mode with current control is also enabled for the case of isolated local grid involving other dispersed power generators such as other wind turbines or diesel generators. A novel automatic mode switch method based on a phase-locked loop controller is developed in order to detect the grid failure or recovery and switch the operation mode accordingly. A flexible digital signal processor (DSP) system that allows user-friendly code development and online tuning is used to implement and test the different control strategies. The back-to-back power conversion configuration is chosen where the generator converter uses a built-in standard flux vector control to control the speed of the turbine shaft while the grid-side converter uses a standard pulse-width modulation active rectifier control strategy implemented in a DSP controller. The design of the longitudinal conversion loss filter and of the involved PI-controllers are described in detail. Test results show the proposed methods works properly.
机译:本文介绍了具有背靠背功率转换器的11 kW风力发电机的灵活控制策略的开发和测试,该功率转换器能够在独立模式和并网模式下工作。独立控制具有复杂的输出电压控制器,能够处理非线性负载以及所产生功率的过量或不足。对于涉及其他分散式发电机(例如其他风力涡轮机或柴油发电机)的隔离局部电网,也可以启用带有电流控制的并网模式。为了检测电网故障或恢复并相应地切换操作模式,开发了一种基于锁相环控制器的新颖的自动模式切换方法。允许用户友好的代码开发和在线调整的灵活数字信号处理器(DSP)系统用于实现和测试不同的控制策略。选择背靠背功率转换配置,其中发电机转换器使用内置的标准磁通矢量控制来控制涡轮轴的速度,而电网侧转换器使用已实现的标准脉冲宽度调制有源整流器控制策略在DSP控制器中详细描述了纵向转换损耗滤波器和所涉及的PI控制器的设计。测试结果表明,该方法是可行的。

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