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Dynamic voltage restorer with an improved strategy to voltage sag compensation and energy self-recovery

机译:动态电压恢复器,具有改进的策略,用于电压下垂补偿和能量自恢复

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摘要

In this paper, an improved control scheme is proposed to improve the voltage quality of sensitive loads using dynamic voltage restorer. The existing control strategies either put emphasis on the optimal control during steady operation stage of compensation or correct the phase angle jump in the initial stage of compensation. In current researches, the impact of phase jump characteristic of voltage sag on the load side after voltage sag recoveries is widely ignored, further, there are still drawbacks in existing energy self-recovery strategies of DVR. Therefore, to improve the overall voltage compensation time while correcting the phase jump and accelerate the energy recovery of dc link side, this paper aims to 1) Propose the strategies to minimum active power consumption during voltage compensation stage and maximum active power absorption during energy self-recovery stage. 2) Deliver smooth transition in dynamic process to ensure the flexible switching between two stages. Theoretical analysis of proposed strategy is been validated through simulation and experimental results.
机译:在本文中,提出了一种改进的控制方案来提高使用动态电压恢复器来提高敏感载荷的电压质量。现有的控制策略要么在补偿稳定操作阶段时强调最佳控制,或者在补偿初始阶段校正相位角跳跃。在目前的研究中,电压凹陷回收后的负载侧电压凹陷相位跳跃特性的影响进一步忽略了现有能量自恢复策略中的缺点。因此,为了提高整体电压补偿时间,同时校正相位跳跃并加速直流链路侧的能量回收,本文的目的是1)提出电压补偿阶段期间最小有功功率的策略以及能量自我期间的最大有源功率吸收。 -recovery阶段。 2)在动态过程中提供平滑过渡,以确保两个阶段之间的灵活切换。通过模拟和实验结果验证了提出策略的理论分析。

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