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Coordinated Control of Reactive Power between STATCOMs and Wind Farms for PCC Voltage Regulation

机译:STATCOM与风电场之间无功功率的协调控制,用于PCC电压调节

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This paper proposes a coordinated control of the reactive power between the STATCOMs (static synchronous compensators) and the grid-side converters (GSC) of wind farms equipped with PMSGs (permanent-magnet synchronous generators), by which the voltage fluctuations at the PCC (point of common coupling) are mitigated in the steady state. In addition, the level of voltage sags is reduced during grid faults. To do this, the GSC and the STATCOM supply reactive power to the grid coordinately, where the GSCs are fully utilized to provide the reactive power for the grid prior to the STATCOM operation. For this, the GSC capability of delivering active and reactive power under variable wind speed conditions is analyzed in detail. In addition, the PCC voltage regulation of the power systems integrated with large wind farms are analyzed for short-term and long-term operations. With this coordinated control scheme, the low power capacity of STATCOMs can be used to achieve the low-voltage ride-through (LVRT) capability of the wind farms during grid faults. The effectiveness of the proposed strategy has been verified by PSCAD/EMTDC simulation results.
机译:本文提出了STATCOM(静态同步补偿器)与装有PMSG(永磁同步发电机)的风电场的电网侧变流器(GSC)之间的无功功率的协调控制,通过该控制,PCC处的电压波动(在稳定状态下,通用耦合点减小)。另外,在电网故障期间降低了电压骤降的水平。为此,GSC和STATCOM协调地向电网提供无功功率,在STATCOM运行之前,GSC被充分利用以为电网提供无功功率。为此,将详细分析GSC在可变风速条件下提供有功和无功功率的能力。此外,还分析了与大型风电场集成的电力系统的PCC电压调节,以进行短期和长期运行。通过这种协调控制方案,STATCOM的低功率容量可用于实现电网故障期间风电场的低电压穿越(LVRT)能力。 PSCAD / EMTDC仿真结果验证了所提策略的有效性。

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