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Strategy for wind power plant contribution to frequency control under variable wind speed

机译:风电厂在变风速下对频率控制的贡献策略

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Current constraints require limiting the power transmitted from wind farms to power grids. Hence, wind turbine systems should be capable of regulating and limiting the generation capacity for a wide range of operating wind speeds. In addition, wind power plants must be endowed with active power and frequency control capabilities. In a single wind farm, wind turbines can be installed at different heights or altitudes, consequently exposing them to variable environmental conditions that can cause variations among their surrounding wind speeds. Thus, we propose a de-loading control strategy that integrates over-speeding and pitch control of wind turbines operating at variable wind speeds. This strategy allows not only storing power to satisfy the constraint demand of the power grid, but also contributing to primary frequency control. In fact, the proposed control strategy can adjust the static frequency difference coefficient of wind turbines, which is based on the proportion of variable-speed wind turbines operating under high wind speeds. Moreover, the proposed control strategy, which supports frequency control of the power grid under power constraints, suitably supports the frequency regulation of wind turbines that work at different wind speeds. Simulation results suggest that the proposed control strategy meets the power grid constraints, enhances the performance of primary frequency control, alleviates the frequency control pressure from thermal power plants, and appropriately generates curtailed wind power under variable wind speeds. (C) 2017 Elsevier Ltd. All rights reserved.
机译:当前的限制要求限制从风电场向电网传输的功率。因此,风力涡轮机系统应该能够在很大范围的工作风速下调节和限制发电量。此外,风力发电厂必须具备有功功率和频率控制功能。在单个风电场中,风力涡轮机可以安装在不同的高度或高度,因此使其暴露于变化的环境条件下,这可能导致其周围风速发生变化。因此,我们提出了一种减载控制策略,该策略整合了以可变风速运行的风力涡轮机的超速和变桨控制。该策略不仅允许存储电力以满足电网的约束需求,而且还有助于一次频率控制。实际上,所提出的控制策略可以基于在高风速下运行的变速风力涡轮机的比例来调整风力涡轮机的静态频差系数。而且,所提出的控制策略在功率约束下支持电网的频率控制,适当地支持以不同风速工作的风力涡轮机的频率调节。仿真结果表明,所提出的控制策略能够满足电网的约束条件,提高一次频率控制的性能,减轻火力发电厂的频率控制压力,并在变风速下适当地产生减小的风力。 (C)2017 Elsevier Ltd.保留所有权利。

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