西安交通大学电气工程学院,西安,710049
网络首发:2022-03-10,
纸质出版:2022
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帅轩越, 王秀丽, 王志成, 等. 计及风电消纳下基于纳什议价理论的多综合能源系统协同运行[J]. 西安交通大学学报, 2022,56(3):187-196.
Cooperative Operation for Multiple Integrated Energy Systems Considering Wind Power Consumption by Nash Bargaining Convention[J]. 2022, 56(3): 187-196.
帅轩越, 王秀丽, 王志成, 等. 计及风电消纳下基于纳什议价理论的多综合能源系统协同运行[J]. 西安交通大学学报, 2022,56(3):187-196. DOI: 10.7652/xjtuxb202203019.
Cooperative Operation for Multiple Integrated Energy Systems Considering Wind Power Consumption by Nash Bargaining Convention[J]. 2022, 56(3): 187-196. DOI: 10.7652/xjtuxb202203019.
为有效提高多个电热综合能源系统(HE-IES)的能源利用率
针对计及风电消纳下多个HE-IES协同运行的成本分摊问题
提出一种基于纳什议价理论的多HE-IES的多目标优化运行模型。构建多HE-IES的框架
针对HE-IES内燃气轮机、热泵、电储能、热储能等设备进行建模
并建立多个HE-IES间、HE-IES与配网间的功率交互模型; 以多HE-IES的运行成本与风电消纳作为指标
通过多目标加权规划法建立多HE-IES的多目标优化模型; 进一步地
通过纳什议价理论建立多个HE-IES的合作博弈模型
通过数学转换将非凸问题转换为两个凸的子问题
实现每个HE-IES均达到帕累托最优
以保证各HE-IES参与合作的积极性。算例仿真表明
相比各HE-IES独立运行
所提模型使得总运行成本和总弃风成本分别减少了660.14与222.03元
使得每个HE-IES的运行成本与弃风成本分别减少了220.05与74.07元
实现了所有HE-IES的帕累托最优。
To effectively improve energy efficiency of multiple HE-IESs
aiming at the cost sharing problem of multiple HE-IESs coordinated operation taking wind power consumption into account
a multi-HE-IESs multi-objective optimization operation model with Nash bargaining theory is proposed. The framework of multi-HE-IESs is constructed to model gas turbine
heat pump
electric energy storage
thermal energy storage and the other equipments in HE-IES
and multiple power interaction models among HE-IESs and between HE-IES and distribution network are established. Taking operating costs and wind power consumption of multi-HE-IESs as the indicators
the multi-objective weighted programming method is used to establish a multi-HE-IESs multi-objective optimization model. Furthermore
following Nash bargaining theory
a cooperative game model of multi-HE-IESs is constructed
and the non-convex problem is transformed into two convex sub-problems via mathematical transformation to realize the Pareto optimum for each HE-IES
which ensures the enthusiasm of all HE-IESs to participate in cooperation. A simulation example verifies that the proposed method enables to reduce total operating costs and total wind curtailment costs by 660.14 and 222.03 yuan
respectively
and also to reduce operating costs and wind curtailment costs of each HE-IES by 220.05 and 74.07 yuan
thus the Pareto optimum of overall HE-IESs is achieved.
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