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Active and Reactive Power Control Schemes for Distributed Generation Systems Under Voltage Dips

机译:电压倾斜下的分布式发电系统的主动和无功功率控制方案

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During voltage dips continuous power delivery from distributed generation systems to the grid is desirable for the purpose of grid support. In order to facilitate the control of distributed generation systems adapted to the expected change of grid requirements, generalized power control schemes based on symmetric-sequence components are proposed in this paper for inverter-based distributed generation, aiming at manipulating the delivered instantaneous power under voltage dips. It is shown that active power and reactive power can be independently controlled with two individually adaptable parameters. By changing these parameters, the relative amplitudes of oscillating power can be smoothly regulated, as well as the peak values of three-phase grid currents. As a result, the power control of grid-side inverters becomes quite flexible. Furthermore, two strategies for simultaneous active and reactive power control are proposed that preserves adaptive controllability. Finally, the proposed schemes are verified experimentally.
机译:在电压下,对于网格支架,可以将分布式发电系统从分布生成系统到电网的连续电力传递。为了便于控制适用于电网要求的预期变化的分布式发电系统,本文提出了基于对称序列组分的广义功率控制方案,用于基于逆变器的分布式产生,旨在操纵瞬间瞬间电力下的电压逢低。结果表明,有主动功率和无功功率可以用两个可单独的适应性参数独立控制。通过改变这些参数,可以平稳地调节振荡功率的相对幅度,以及三相电流的峰值。结果,电网侧逆变器的功率控制变得非常灵活。此外,提出了两种同时主动和无功功率控制的策略,从而保留了自适应可控性。最后,提出的计划经过实验验证。

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