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Integration Control Strategy of IPOS DC Step-up Type Photovoltaic Power Plant Via MMC-HVDC

机译:通过MMC-HVDC进行IPOS直流升压型光伏电站的集成控制策略

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Large-scale photovoltaic power plants use DC-collective boosting and delivery methods to have certain advantages in terms of transmission efficiency, cost and stability. This paper based on the scheme which the large-scale photovoltaic power station with input parallel output series (IPOS) is DC-boosted and then the modular multi-level single-ended flexible DC grid-connected, which deeply considers the voltage equalization and current sharing in the DC boost structure. To solve the problem, a DC-boost converter dynamic output voltage compensation control is combined with an optimized decoupling dual synchronous reference coordinate system phase-locked loop (DDSRF-PLL) for positive and negative sequence dual current loop control. Through the coordination between the pre-stage and the post-stage, the influence of the over-voltage and negative-sequence components of the DC bus on the grid-connected current is effectively suppressed. In addition, a soft start control strategy is proposed to suppress the system from overcurrent. Finally, the effectiveness of the control strategy is verified by simulation.
机译:大型光伏电站使用直流集体升压和输电方法,在传输效率,成本和稳定性方面具有一定优势。本文基于将输入并联输出系列(IPOS)的大型光伏电站进行直流升压,然后将模块式多级单端柔性直流并网的方案,该方案深入考虑了电压均衡和电流在直流升压结构中共享。为了解决该问题,将直流-升压转换器动态输出电压补偿控制与优化的去耦双同步参考坐标系锁相环(DDSRF-PLL)相结合,以实现正序和负序双电流环路控制。通过前级和后级之间的协调,有效抑制了直流母线的过电压和负序分量对并网电流的影响。另外,提出了一种软启动控制策略来抑制系统过电流。最后,通过仿真验证了控制策略的有效性。

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