1. 四川大学电气工程学院,四川省,成都市,610065
2. 湖南大学电气与信息工程学院,湖南省,长沙市,410082
3. 国网四川省电力公司电力科学研究院,四川省,成都市,610041
纸质出版:2025
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胡紫淇, 何川, 刘绚, 等. 考虑双燃料机组与联络线提高系统韧性的气电联合配网两阶段分布鲁棒规划方法[J]. 中国电机工程学报, 2025,45(20):8011-8023.
HU Ziqi, HE Chuan, LIU Xuan, et al. A Two-stage Distributionally Robust Expansion Planning Model Considering Dual-fuel Units and Tie Lines for Resilience Enhancement of Integrated Electricity and Natural Gas Distribution Systems[J]. 2025, 45(20): 8011-8023.
胡紫淇, 何川, 刘绚, 等. 考虑双燃料机组与联络线提高系统韧性的气电联合配网两阶段分布鲁棒规划方法[J]. 中国电机工程学报, 2025,45(20):8011-8023. DOI: 10.13334/j.0258-8013.pcsee.240835.
HU Ziqi, HE Chuan, LIU Xuan, et al. A Two-stage Distributionally Robust Expansion Planning Model Considering Dual-fuel Units and Tie Lines for Resilience Enhancement of Integrated Electricity and Natural Gas Distribution Systems[J]. 2025, 45(20): 8011-8023. DOI: 10.13334/j.0258-8013.pcsee.240835.
全球愈加严峻的气候问题不仅带来了多能耦合的趋势,也对能源系统抵御极端灾害影响的能力提出了更高的要求。为提升气电联合配网的韧性,提出一种考虑双燃料机组与联络线提高系统韧性的气电联合配网两阶段分布鲁棒规划模型。首先,建立以运行成本和规划成本之和为目标函数的气电联合配网扩展规划模型,模型考虑了燃气轮机、电转气设备、储电设备、储气设备以及线路和管道的升级问题;在提升韧性方面,考虑双燃料机组在灾害下天然气不足时存在更换燃料供给负荷的能力,而联络线的投建可以增加气电联合孤岛中配电网重构灵活性,增强系统的韧性,进而对双燃料机组与联络线的投建进行建模;并在运行层面计及配电网重构等约束。其次,使用基于Kullback-Leibler (KL)散度的分布鲁棒优化方法考虑极端灾害影响的不确定性,建立了计及极端灾害下气电联合配网系统韧性约束的两阶段分布鲁棒扩展规划模型,第1阶段在基础场景下考虑系统经济性进行规划,第2阶段将极端灾害场景下系统允许的韧性指标作为约束,得到满足韧性指标的最优规划决策。最后,通过算例分析验证了模型可提升气电联合配网正常运行时的经济性,且具有增强极端灾害时的韧性的能力。
The increasingly severe global climate problem has not only brought the trend of multi-energy coupling but also put forward higher requirements on the ability of energy systems to resist the impact of extreme disasters. To improve the resilience of integrated electricity and natural gas distribution systems (IEGDS)
this paper proposes a two-stage distributionally robust expansion planning model considering dual-fuel units and tie lines. Firstly
a deterministic expansion planning model is established
in which the sum of the system's operation and planning cost is taken as the objective function. The planning model considers the deployment of gas turbines
power-to-gas equipment
power storage equipment
gas storage equipment and the upgrades of lines and pipelines. In terms of improving resilience
the paper considers combined gas and electricity islands with tie lines to enhance the resilience of the IEGDS
given that dual-fuel units can replace fuel supply loads when natural gas is insufficient during disasters
and the construction of tie lines can increase the flexibility of distribution network reconfiguration. Therefore
the construction of dual-fuel units and tie lines is modeled. Operation constraints such as reconfiguration of the distribution network are also considered in the model. Secondly
using distributionally robust optimization method based on Kullback-Leibler (KL) divergence to model the uncertainty of extreme disasters' impact
the paper establishes a two-stage distributionally robust expansion planning model. In the first stage
the model calculates the most economical planning decision of IEGDS in the basic case. In the second stage
the optimal planning decision is obtained using the resilience threshold set by the system operator to form the resilience constraint. Finally
through case study
the paper demonstrates how the proposed model improves the economics of IEGDS operation under normal conditions and enhances resilience during extreme disasters.
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