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Impact of active power curtailment of wind turbines connected to residential feeders for overvoltage prevention

机译:动力缩减风力涡轮机的影响超前防护

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Overvoltage is a major limiting factor for the integration of distributed generation in distribution systems. Among various solutions to the overvoltage problem, active power curtailment is an attractive solution since only small adjustments in the controllers are necessary for implementing this technique. Furthermore, it is activated only when needed. In wind energy systems, this can be achieved by adjusting the pitch angle of a wind turbine. The objective of this paper is to develop an active power curtailment strategy for small wind turbines to prevent overvoltage by controlling the pitch angle of the turbine blades. The required blade pitch angle was calculated by using the voltage droop method. The developed control strategy was validated by a real time simulation of a rural feeder model developed using RT-Lab software. The feeder is based upon a North American rural distribution network consisting of 96 small wind turbines of 20 kW, a 30 MVA distribution substation with an On-Load Tap-Changing transformer, a rural feeder with 288 houses, a 120 kV/25 kV LV transformer, and rural loads. The results show the effectiveness of the method in keeping the voltage within acceptable limits and a reduction in network losses.
机译:过电压是分配系统中分布式发电集成的主要限制因素。在过电压问题的各种解决方案中,有效的电力缩减是一种有吸引力的解决方案,因为控制器中的小调整是实现该技术所必需的。此外,仅在需要时被激活。在风能系统中,这可以通过调节风力涡轮机的俯仰角来实现。本文的目的是开发用于小型风力涡轮机的有源电力缩减策略,以防止通过控制涡轮机叶片的俯仰角来防止过电压。通过使用电压下垂方法计算所需的刀片桨距角。通过使用RT-Lab软件开发的农村馈线模型的实时模拟验证了开发的控制策略。进料器基于北美农村分销网络,由96个小型风力涡轮机组成,由20千瓦的96个小风力涡轮机组成,30个MVA分配变电站,带有288个房屋的农村饲养者,一个120 kV / 25 kV LV的农村饲养者变压器和农村负荷。结果表明了该方法在保持可接受限度内的电压和网络损耗的降低的效果。

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