储能
碳捕获和储存(时间表)
环境科学
碳纤维
分布式发电
价值(数学)
功率(物理)
能量(信号处理)
分布(数学)
计算机科学
工艺工程
工程类
可再生能源
电气工程
地质学
气候变化
数学
物理
数学分析
海洋学
统计
算法
量子力学
机器学习
复合数
作者
Hongchao Gao,Tai Jin,Guanxiong Wang,Qixin Chen,Chongqing Kang,Jingkai Zhu
标识
DOI:10.35833/mpce.2023.000762
摘要
The scale of distributed energy resources is increasing, but imperfect business models and value transmission mechanisms lead to low utilization ratio and poor responsiveness. To address this issue, the concept of cleanness value of distributed energy storage (DES) is proposed, and the spatiotemporal distribution mechanism is discussed from the perspectives of electrical energy and cleanness. Based on this, an evaluation system for the environmental benefits of DES is constructed to balance the interests between the aggregator and the power system operator. Then, an optimal low-carbon dispatching for a virtual power plant (VPP) with aggregated DES is constructed, where-in energy value and cleanness value are both considered. To achieve the goal, a green attribute labeling method is used to establish a correlation constraint between the nodal carbon potential of the distribution network (DN) and DES behavior, but as a cost, it brings multiple nonlinear relationships. Subsequently, a solution method based on the convex envelope (CE) linear re-construction method is proposed for the multivariate nonlinear programming problem, thereby improving solution efficiency and feasibility. Finally, the simulation verification based on the IEEE 33-bus DN is conducted. The simulation results show that the multidimensional value recognition of DES motivates the willingness of resource users to respond. Meanwhile, resolving the impact of DES on the nodal carbon potential can effectively alleviate overcompensation of the cleanness value.
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