山东科技大学电气与自动化工程学院,青岛,266590
纸质出版:2025
移动端阅览
张玉敏, 3, 杨子震, 等. 市场环境下考虑配网重构和需求响应的输配协同优化调度[J]. 高电压技术, 2025,51(6):2954-2964.
ZHANG Yumin, 3, YANG Zizhen, et al. Collaborative Optimization Scheduling of Transmission and Distribution Considering Distribution Network Reconfiguration and Demand Response in Market Environment[J]. 2025, 51(6): 2954-2964.
张玉敏, 3, 杨子震, 等. 市场环境下考虑配网重构和需求响应的输配协同优化调度[J]. 高电压技术, 2025,51(6):2954-2964. DOI: 10.13336/j.1003-6520.hve.20240170.
ZHANG Yumin, 3, YANG Zizhen, et al. Collaborative Optimization Scheduling of Transmission and Distribution Considering Distribution Network Reconfiguration and Demand Response in Market Environment[J]. 2025, 51(6): 2954-2964. DOI: 10.13336/j.1003-6520.hve.20240170.
针对传统输电网和主动配电网(active distribution network,ADN)独立的调度方式致使“源-网-荷”各环节资源协同潜力挖掘不充分,难以实现输-配系统经济高效运行的问题,提出了市场环境下考虑配电网络重构和需求响应的输配优化调度方法。首先,剖析电力市场机制下输-配电网间的耦合机理,构建考虑机组组合的输电网市场出清模型,以发挥“源侧”应对电力负荷波动的能力;以节点边际电价为引导信号,提出同时考虑ADN网络重构和需求侧响应的输配协同双层优化模型,旨在挖掘ADN在“网侧”和“荷侧”的双侧协同潜力,从而提高输-配电网中“源-网-荷”各环节资源间的协同能力。其次,针对输-配模型上、下层级的物理特点,采用随机规划L形算法,引入虚拟变量实现输配协同模型的解耦,基于对偶理论,获取反映资源利用情况的对偶乘子集合,进而计算次梯度参数并生成仿射割集,优化输-配耦合变量,加速模型收敛,实现对输-配协同模型的分布式高效求解。最后,以6节点输电网和7节点配电网构成的T6+D7系统和118节点输电网和8个20节点配电网构成的T118+8*D20系统为例,验证所提模型和方法的有效性,研究结果表明:输配系统的整体经济性提升了8.68%,所提模型和方法具有明显优势。
To address the problem that the independent dispatching method of traditional transmission network and active distribution network (ADN) leads to insufficient exploitation of resource synergy potential of each part of "source-network-load" and makes it difficult to achieve economic and efficient operation of transmission-distribution system
this paper proposes a transmission and distribution optimization scheduling method under the electricity market
which takes into account the distribution network reconfiguration and demand response. Firstly
the coupling mechanism between transmission and distribution networks under the power market mechanism is analyzed
and a transmission grid market clearing model considering the unit commitment is established
so as to bring into play the ability of the "source side" to cope with the fluctuation of power load. By using the locational marginal price as a guiding signal
a transmission and distribution cooperative two-layer optimization model considering both ADN network reconfiguration and demand-side response is proposed. The objective is to explore the synergy potential of ADN on the "network side" and "load side"
so as to improve the synergy capability among the resources of "source-net-load" in the transmission-distribution network. Secondly
the stochastic programming L-shaped algorithm is used to decouple the transmission-distribution synergy model by introducing dummy variables in the upper transmission network. In the lower distribution network
a set of pairwise multipliers reflecting the resource utilization is obtained based on the pairwise theory. By calculating the sub-gradient coefficients and generating the affine cut set
the transmission-distribution coupling variables are optimized to accelerate the convergence of the model and realize the distributed and efficient solution of the transmission-distribution synergy model. The model is efficiently solved in a distributed manner. Finally
the T6+D7 system consisting of a 6-node transmission network and a 7-node distribution network and T118+8*D20 system consisting of a 118-node transmission network and eight 20-node distribution networks are used as examples to verify the effectiveness of the proposed model and method. The research results indicate that the overall economic efficiency of the transmission and distribution system has increased by 8.68%
and the proposed model and method have significant advantages.
0
浏览量
0
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621