基于容量梯度优化的分布式调相机配置方法研究

Distributed Synchronous Condenser Configuration Method Based on Capacity Gradient Optimization

  • 摘要: 高比例新能源并网后导致系统电压支撑能力降低,易引发电网运行风险。分布式调相机(distributed synchronous condenser,DSC)凭借其动态无功支撑能力,可有效提升系统短路容量,并正逐步在新能源场站中规模化部署。该文针对DSC提升电压支撑强度及优化配置问题,首先基于新能源多场站短路比(multiple renewable energy stations short circuit ratio,MRSCR)指标,分析DSC接入对MRSCR的影响机理,提取出装机容量和并网等效电抗两个关键影响因素,进而获得不同场景下MRSCR的演化规律。然后,考虑场地空间约束、DSC容量多样性以及电网安全运行要求,提出一种基于容量梯度优化的DSC配置方法,在满足电网安全约束的同时,显著提升MRSCR指标。结合某实际电网大型新能源基地的系统仿真分析表明,采用所提DSC配置方法,可有效提升电网MRSCR,且与传统配置方法相比,所需DSC总容量显著降低。

     

    Abstract: The high proportion of new energy sources connected to the grid reduces the system's voltage support capability, thereby resulting in operational risks in the power generation network. Distributed synchronous condensers (DSCs) are gradually being deployed at scale in new energy stations due to their dynamic reactive power support capability, which can effectively enhance the system's short-circuit capacity. This study focuses on improving voltage support capability and optimizing the configuration of DSCs. Firstly, based on the multiple renewable energy stations short circuit ratio (MRSCR) index, the impact mechanism of DSC access on MRSCR is analyzed. Two key influencing factors, installed capacity and grid-connected equivalent reactance, are extracted to analyze the evolution law of the MRSCR in different scenarios. Then, considering the constraints of site space, DSC capacity diversity, and the requirements for safe power grid operation, a DSC configuration method based on capacity gradient optimization is proposed. It can significantly improve the MRSCR index while satisfying the safety constraints of the power grid. Based on system simulation analysis of a large-scale new energy base in an actual power grid, the DSC configuration method proposed in this paper can effectively improve the MRSCR of the power grid. Compared to the configuration method based on the lowest short-circuit ratio, the proposed method significantly reduces the total required DSC capacity.

     

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