N-k重故障下计及频率安全约束的鲁棒优化机组组合

Robust Optimized Unit Commitment Considering Frequency Security Constraints UnderN-kContingencies

  • 摘要:为了实现“碳中和、碳达峰”的目标,新能源发电在我国能源结构中将逐渐占据主体地位,大量新能源机组并网降低了电力系统的惯量水平和频率抗扰能力。为解决低惯量系统的调频能力,考虑风电机组的调频特性,建立含有惯性响应能力和一次调频能力的火电机组和风电机组的频率响应模型,推导频率最低点的表达式。在传统机组组合中考虑计及机组故障不确定性的频率安全约束,建立 N- k重故障下计及频率安全约束的两阶段鲁棒优化模型,并采用Benders分解法进行求解。最后采用基于IEEE-RTS79的可靠性测试系统进行算例分析,验证文中模型的有效性。

    Abstract:To achieve the goals of carbon neutrality and peak carbon dioxide emissions, new energy power generation will gradually occupy a dominant position in the energy structure of China, and large amount of grid-connected new energy generating units reduces inertia level and anti-interference ability of power grids. To improve the frequency regulation ability of low inertial system, considering frequency regulation characteristics of wind power units a frequency response model for thermal power generating and wind power generating units, which possessed inertial response capability and primary frequency modulation capability, was built, and the expression of the lowest frequency was deduced. In traditional unit commitments, the frequency security constraints, in which the uncertainty of unit fault was taken into account, was considered, and a two-stage robust optimization model taking frequency security constraint into account under N-kfaults was established and solved by Benders decomposition method. Finally, the reliability test system based on IEEE-RTS79 was utilized for analysis on computing example. The effectiveness of the established model is verified.

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