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Coordinated Control Method for DFIG-Based Wind Farm to Provide Primary Frequency Regulation Service

机译:基于DFIG的风电场的协调控制方法提供初级频率调节服务

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With the rapid growth of wind power penetration, system operators are required to enforce grid codes that implement frequency regulation of wind farms. This paper presents a distributed cooperation framework for a doubly fed induction generator-based wind farm to participate in primary frequency regulation, including imitated inertia and droop characteristics similar to conventional plants. Compared with centralized schemes, the control efficiency is significantly improved. To realize fast distributed coordination and optimal power distribution among wind turbines (WTs), a distributed Newton method is developed, which only requires WTs to exchange limited information with their neighbors over a sparse communication network, and has a super-linear convergence rate. By introducing an index of state of energy, this method can adequately exploit the kinetic energy of all WTs without loss of security. The simulation results indicate that the method exhibits satisfying dynamic performance and reliability, and the system frequency can be stabilized faster when the wind farm controlled by the proposed method participates in frequency control.
机译:随着风力渗透的快速增长,需要系统运营商来强制实施频率调节风电场的网格代码。本文介绍了一款双馈进纸发电机的风电场的分布式合作框架,以参与初级频率调节,包括类似于传统植物的模仿惯性和下垂特性。与集中方案相比,控制效率显着提高。为了实现风力涡轮机(WTS)之间的快速分布式协调和最佳功率分布,开发了一种分布式牛顿方法,该方法仅需要WTS在稀疏通信网络上与其邻居交换有限的信息,并且具有超线性收敛速率。通过引入能量状态指标,这种方法可以充分利用所有WTS的动能而不会损失安全性。仿真结果表明,该方法表现出满足动态性能和可靠性,并且当由所提出的方法控制的风电场参与频率控制时,系统频率可以更快地稳定。

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