Distributionally robust energy-transportation coordination in coal mine integrated energy systems
调度(生产过程)
稳健优化
数学优化
煤
计算机科学
随机规划
工程类
数学
废物管理
作者
Hongxu Huang,Zhengmao Li,Hoay Beng Gooi,Haifeng Qiu,Xiaolin Zhang,Chaoxian Lv,Rui Liang,Dunwei Gong
出处
期刊:Applied Energy [Elsevier] 日期:2023-03-01卷期号:333: 120577-120577被引量:1
标识
DOI:10.1016/j.apenergy.2022.120577
摘要
In this paper, a coordinated operation approach is proposed for scheduling the energy-transportation coupled coal mine integrated energy system (CMIES) under diverse uncertainties. As the coupling equipment in the coal transportation network (CTN) and the CMIES, the belt conveyors are able to coordinate the coal delivery scheduling and energy management. However, lacking the CTN modelling remains an unsolved challenge. Firstly, this paper proposed a novel energy-transportation coordinated model, consisting of the radial CTN and second-order cone programming (SOCP) relaxed CMIES. To address uncertainties from renewable energy generation output and raw coal production, the distributionally robust optimization (DRO) method is applied under the two-time scale operation framework to overcome the drawbacks of robust optimization and stochastic programming. The first timescale, i.e., the day-ahead scheduling, is focused on energy dispatching at long time intervals while the second scale i.e., the intra-day. scheduling, deals with uncertainties at short time intervals. Specifically, an event-wise Wasserstein ambiguity set is devised to handle the issue of probability distribution function information requirement, which is hard to obtain in practice. Finally, a real case of CMIES is simulated to validate the effectiveness of our proposed model and method. The results reveal that our method can effectively enhance the operational economy, realize decarbonization, and fulfill the coal transportation continuity compared to conventional methods.