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An Improved Droop Control Method with ability of secondary frequency control for Micro-grid inverters

机译:具有微电网逆变器二次频率控制能力的改进的下垂控制方法

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With the development of Distributed Generations (DGs), its inherent randomness and fluctuation in the power production is slowly demonstrated. The microgrid maybe solve the above problem. The traditional droop control technology is common in operation of DGs in Microgrids. But it presents a large frequency deviation when facing large load demand, which need to be solved. A new method is presented to merge the secondary control function into the traditional droop control for multi-inverters. The method can built the relation from frequency unqualified zone by the only primary control to the qualified zone by the secondary control with the help of projection function. The method can automatically find new nominal power output value to change the former operation point to reduce the frequency deviation range and even no deviation without the help of communication. It help the aim of plug and play in microgrids. The test in Matlab/Simulink environments were carried out and the results verified the validity of the new method with secondary control strategy in deal with the large load demand.
机译:随着分布式发电系统(DGs)的发展,其内在的随机性和电力生产中的波动逐渐被证明。微电网也许可以解决上述问题。传统的下垂控制技术在微电网中的分布式发电系统中很常见。但是,当面对较大的负载需求时,它会出现较大的频率偏差,这是需要解决的。提出了一种将次级控制功能合并到传统的多变频器下降控制中的新方法。该方法可以借助投影功能建立从唯一一次控制的频率不合格区域到二次控制的合格区域之间的关系。该方法可以自动找到新的标称功率输出值,以改变以前的工作点,以减小频率偏差范围,甚至在没有通信的情况下甚至没有偏差。它有助于实现微电网即插即用的目的。在Matlab / Simulink环境下进行了测试,结果验证了该方法与二级控制策略相结合的有效性。

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