王子伊, 王玮, 马伟, 陈哲, 吴学智, 唐芬. 梯级水光蓄互补发电系统实时协调控制策略[J]. 电网技术, 2021, 45(3): 871-880. DOI: 10.13335/j.1000-3673.pst.2020.0579
引用本文: 王子伊, 王玮, 马伟, 陈哲, 吴学智, 唐芬. 梯级水光蓄互补发电系统实时协调控制策略[J]. 电网技术, 2021, 45(3): 871-880. DOI: 10.13335/j.1000-3673.pst.2020.0579
WANG Ziyi, WANG Wei, MA Wei, CHEN Zhe, WU Xuezhi, TANG Fen. Real-time Coordinated Control for Cascade Hydro-photovoltaic-pumped Storage Complementary Generation System[J]. Power System Technology, 2021, 45(3): 871-880. DOI: 10.13335/j.1000-3673.pst.2020.0579
Citation: WANG Ziyi, WANG Wei, MA Wei, CHEN Zhe, WU Xuezhi, TANG Fen. Real-time Coordinated Control for Cascade Hydro-photovoltaic-pumped Storage Complementary Generation System[J]. Power System Technology, 2021, 45(3): 871-880. DOI: 10.13335/j.1000-3673.pst.2020.0579

梯级水光蓄互补发电系统实时协调控制策略

Real-time Coordinated Control for Cascade Hydro-photovoltaic-pumped Storage Complementary Generation System

  • 摘要: 梯级水光蓄互补发电系统将梯级小水电(cascade small hydropower plant,CSHP)、分布式光伏(photovoltaic,PV)和抽水蓄能相结合,可平抑PV功率波动、提高其可调度性。针对这种互补发电系统的实时控制问题,首先提出了基于经验模态分解法(empirical mode decomposition,EMD)的全功率变速恒频抽蓄机组(full size converter based variable speed constant frequency pumped storage unit,FSC-VSCFPSU)平抑PV功率波动控制策略,根据经EMD法提取的PV功率波动的高低频分量,自适应确定平抑目标,快速为FSC- VSCFPSU确定所需的补偿功率。其次,提出了基于CSHP与FSC-VSCFPSU协调控制的互补发电系统跟踪调度计划策略,在平抑PV功率波动控制策略处理的基础上,根据调度计划协调分配CSHP及FSC-VSCFPSU的输出功率,以最小化系统出力与调度计划的偏差,确保系统平稳跟踪调度计划运行。此外,还给出了基于变速运行模式的FSC- VSCFPSU虚拟同步机控制策略,通过模拟同步机特性来控制机组的全功率变流器运行,实现FSC-VSCFPSU的快速功率响应,保证平抑PV功率波动控制策略及跟踪调度计划策略的有效执行。通过实例仿真计算和分析验证了所提控制策略的有效性和可行性。

     

    Abstract: The cascade hydro-photovoltaic-pumped storage complementary generation system (CHPPSCGS) combined with a cascade small hydropower plant (CSHP), a distributed photovoltaic (PV) plant and a pumped storage unit, can smooth the PV power fluctuations and improve its schedulability. Regarding the real-time control problem of the CHPPSCGS, this paper proposes an empirical mode decomposition (EMD) based control strategy for using the full size converter based variable speed constant frequency pumped storage unit (FSC-VSCFPSU) to smooth the PV power fluctuations, including adaptively determining the smoothing goals and quickly deciding the compensation power of the FSC-VSCFPSU by analyzing the high and low frequency components of the PV power fluctuations obtained by using the EMD algorithm. The paper also proposes a CHPPSCGS power generation dispatch schedule (PGDS) tracking strategy based on the coordinated control of CSHP and FSC-VSCFPSU, which coordinately distributes the output power of the CSHP and the FSC-VSCFPSU to minimize the deviation between the CHPPSCGS output and the PGDS to ensure that the CHPPSCGS smoothly tracks the PGDS while smoothing PV power fluctuations. In addition, a virtual synchronous generator control strategy for the FSC-VSCFPSU based on its variable speed operation mode is given, which enables the FSC-VSCFPSU to have fast power response capabilities by emulating the characteristics of synchronous generators to control the grid-connected operation of the full size converter in the FSC-VSCFPSU, and ensures the effective execution of the control strategies of smoothing PV power fluctuations and tracking PGDS. The validity and feasibility of the proposed control strategies are verified by simulation and analysis with examples.

     

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