计及惯量时空特性的含风电电力系统惯量需求评估OA
Evaluation of Inertia Demand for Wind Power-Integrated Power Systems Considering Spatiotemporal Characteristics of Inertia
传统评估方法多基于惯量中心频率指标,仅能反映全网平均频率动态,忽略了新能源高占比下系统惯量随时间变化、空间分布不均的显著特性.针对大规模风电参与惯量支撑与调频导致电力系统惯量水平变化的问题,提出一种计及惯量时空特性的含风电电力系统惯量需求评估方法.首先,构建含风电综合控制的系统频率响应模型,整合风电虚拟惯量响应与桨距角一次调频控制,推导系统传递函数及等效惯性时间常数计算公式,明确风电通过快速响应有功扰动以延缓频率变化率的支撑机理.其次,提出计及惯量时空特性的表征方法,基于节点功率-频率机理分析,构建节点惯量矩阵与时间动态模型,量化同一节点惯量的时间演化规律与不同节点惯量的空间分布差异,弥补传统惯量中心频率评估的局限性;通过获取系统功频方程与频率响应模型,构建惯性时间常数模型,形成考虑时空特性的惯量需求评估模型.最后,基于改进的 IEEE 10 机 39 节点系统进行仿真验证,结果表明:风电参与后可有效提升系统惯量支撑能力,所提方法能精准捕捉不同节点在不同时刻的惯量差异,通过惯量热力图实现时空特性可视化,为新型电力系统规划阶段的惯量配置与运行阶段的频率稳定控制提供量化依据.
Traditional evaluation methods predominantly rely on the center of inertia frequency index,which only reflects the overall average frequency dynamics of the network,ignoring the significant characteristics of time-varying inertia and uneven spatial distribution under high penetration of renewable energy.To address the issue of varying system inertia levels caused by large-scale wind power participating in inertia support and frequency regulation,this paper proposes an inertia demand evaluation method for wind power-integrated power systems considering the spatiotemporal characteristics of inertia.Firstly,a system frequency response model incorporating wind power comprehensive control is constructed by integrating wind power virtual inertia response and pitch angle primary frequency regulation control.The system transfer function and the calculation formula for the equivalent inertia time constant are derived,clarifying the support mechanism of wind power in delaying the rate of change of frequency through rapid response to active power disturbances.Secondly,a characterization method considering the spatiotemporal characteristics of inertia is proposed.Based on the analysis of the nodal power-frequency mechanism,a node inertia matrix and a temporal dynamic model are constructed to quantify the temporal evolution laws of inertia at the same node and the spatial distribution differences among different nodes,thereby overcoming the limitations of traditional center of inertia frequency evaluation.Furthermore,by obtaining the system power-frequency equation and frequency response model,an inertia time constant model is constructed to form an inertia demand evaluation model considering spatiotemporal characteristics.Finally,simulation verification is conducted based on the modified IEEE 10-machine 39-bus system.The results demonstrate that the participation of wind power can effectively enhance the system's inertia support capability.The proposed method accurately captures inertia differences across different nodes at different times and realizes the visualization of spatiotemporal characteristics through inertia heat maps,providing a quantitative basis for inertia configuration in the planning stage and frequency stability control in the operation stage of new power systems.
裴凯;魏万俊;周霞;沈言泰鼎;王子康
国能(甘肃)新能源有限公司,甘肃省 兰州市 730000国能(甘肃)新能源有限公司,甘肃省 兰州市 730000南京邮电大学自动化学院,江苏省 南京市 210023南京邮电大学自动化学院,江苏省 南京市 210023南京邮电大学自动化学院,江苏省 南京市 210023
能源科技
惯量需求评估频率响应惯量时空特性风电高渗透率
inertia demand evaluationfrequency responsespatiotemporal characteristics of inertiahigh penetration of wind power
《分布式能源》 2026 (3)
56-66,11
国家自然科学基金项目(52377085) This work is supported by National Natural Science Foundation of China(No.52377085).
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