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Research on the self-discipline control strategy of dispersed wind power

机译:分散风力自律控制策略研究

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The voltage violation phenomenon can be very prominent in the condition of dispersed wind power (DWP) widely integrated into network, which affects the safe operation during integration and effective consumption of wind power. In this study, a self-discipline control strategy of DWP is proposed to solve the voltage violation problem with high penetration. First, the influence of system voltage after the DWP integrated into network is analysed, which raises the feasibility of self-discipline control strategy. Then, according to the proposed strategy, the object of optimisation model is designed to better the voltage quality of the grid connection point of wind power generator and to maximise the active power outputs of wind power. Considering the non-linear and multivariable characteristics of the optimisation model, this study used the particle swarm optimisation to obtain the reactive power and active power regulations of wind power. Finally, the proposed algorithm is tested and analysed on the IEEE 33-node distribution system, and verified by a practical project. The results show that the self-discipline control strategy can effectively eliminate the voltage violation caused by the DWP integration. Moreover, the wind power can be fully utilised.
机译:电压违规现象在广泛集成到网络中的分散风电(DWP)的条件下可以非常突出,这影响了整合期间的安全操作和有效的风力消耗。在这项研究中,提出了DWP的自律控制策略,以解决高渗透的电压违规问题。首先,分析了DWP集成到网络中的系统电压的影响,从而提高了自律控制策略的可行性。然后,根据所提出的策略,优化模型的对象旨在更好地更好地提供风力发电机电网连接点的电压质量,并最大限度地提高风力电力的电力输出。考虑到优化模型的非线性和多变量特性,本研究采用了粒子群优化来获得风力电力的无功功率和有效功率规范。最后,在IEEE 33节点分配系统上测试和分析所提出的算法,并由实际项目验证。结果表明,自律控制策略可以有效地消除由DWP集成引起的电压违规。而且,可以充分利用风力。

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