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风电变流技术
★ 5.0
考虑风电消纳的城市铁路系统碳效率优化时刻表
Carbon-efficient timetable optimization for urban railway systems considering wind power consumption
| 作者 | Chaoxian Wu · Washington Ochieng · Kuang-Chang Pien · Wen-Long Shang |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 388 卷 |
| 技术分类 | 风电变流技术 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | The timetable optimization problem of the railway system integrated with the power systems with wind power and conventional power output is formulated into a computationally-efficient DC-OPF model. |
语言:
中文摘要
摘要 随着城市铁路系统在全球范围内的广泛应用,过去几十年来其能源消耗持续显著增长,由于电力主要来自传统(化石燃料)发电厂,导致了大量间接碳排放。近年来,可再生能源发电(如风能和光伏发电)在电力系统中的渗透率逐步提高,然而受自然气象条件影响所带来的间歇性特征给其有效利用带来了困难。本文聚焦于与含风电发电的电力系统相耦合的城市铁路系统,提出一种优化模型以寻找能够最小化其运营过程中碳排放的最优运行时刻表。研究以兰州地铁1号线为案例进行分析,结果表明,所提出的方法能够确定最优时刻表,使每日碳排放量减少2.17吨,显著低于原始时刻表下的排放水平。此外,本文还深入比较并讨论了最优时刻表与原始时刻表之间的差异,并进一步探讨了碳效率最优运行与能源效率最优运行之间的区别。
English Abstract
Abstract With the increasing application of urban railway systems around the world, their energy consumption has increased significantly and continuously over the past few decades, which causes large indirect carbon emission volume due to main electricity generation from conventional (fossil-fired) power plants. Penetration rate of the renewable energy generation, such as wind power and photovoltaic (PV), has been observed to increase in power systems in recent years, while the intermittency brought by natural weather conditions imposes difficulties on their utilization. Focusing on urban railway systems integrated with the electric power system with wind power generation, this paper proposes an optimization model to find its optimal timetable to minimize the carbon emissions resulting from its operation. Lanzhou Metro Line 1 is adopted as case study in the research, and the results show that the proposed method can locate the optimal timetable which reduces 2.17 t carbon emissions each day which is much lower than that of the original timetable. Furthermore, the analysis includes insightful comparisons and discussions between the optimal schedule and the original one, followed by the exploration of the difference between the carbon-efficient operation and energy-efficient operation.
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SunView 深度解读
该研究将风电消纳与城轨系统碳减排结合,对阳光电源储能及充电业务具有重要启示。ST系列储能变流器可作为风电-轨道交通耦合的关键枢纽,通过PowerTitan系统实现风电时移调度,配合iSolarCloud平台的预测性调度算法,优化列车时刻表与风电出力的匹配度。该思路可延伸至光储充一体化场站:利用GFM控制技术平抑新能源波动,结合充电站负荷柔性调度,实现交通领域的源网荷协同优化,为轨道交通再生制动能量回收与风光消纳提供系统级解决方案,支撑双碳目标下的绿色交通生态构建。