1. 西南交通大学电气工程学院,四川省,成都市,611756
2. 中国铁路成都局集团有限公司,四川省,成都市,610082
纸质出版:2026
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冯毅煁, 戴朝华, 何祥照, 等. 铁路虚拟电厂及其碳减排策略[J]. 中国电机工程学报, 2026,46(1):328-338.
冯毅煁, 戴朝华, 何祥照, et al. Railway Virtual Power Plant and Its Carbon Emission Reduction Strategy[J]. 2026, 46(1): 328-338.
冯毅煁, 戴朝华, 何祥照, 等. 铁路虚拟电厂及其碳减排策略[J]. 中国电机工程学报, 2026,46(1):328-338. DOI: 10.13334/j.0258-8013.pcsee.241550.
冯毅煁, 戴朝华, 何祥照, et al. Railway Virtual Power Plant and Its Carbon Emission Reduction Strategy[J]. 2026, 46(1): 328-338. DOI: 10.13334/j.0258-8013.pcsee.241550.
电气化铁路牵引供电系统较差的电能质量、较低的容量利用率和高昂的电费成本已成为行业痛点。为此,提出基于异相柔性互联技术的铁路虚拟电厂概念,构建碳减排调控策略和容量配置模型,在满足电能质量并网技术指标前提下,实现经济效益提升。首先,建立铁路虚拟电厂的系统架构;然后,面向碳市场交易需求,提出铁路虚拟电厂碳减排调控策略;进一步地,提出一种考虑最优经济效益的铁路虚拟电厂容量配置方法;最后,基于实测数据及典型工况,进行仿真验证,结果表明:所提铁路虚拟电厂单日能耗降低10.72%,再生制动利用率85.2%,平均功率因数从0.60上升至0.93,项目周期内电费降低54.54%,具有理论和工程价值。
The relatively poor power quality
low capacity utilization and high electricity costs in the existing railway traction power supply systems (TPSSs) become the pain points for the railway and power system sectors. To tackle this issue
this paper proposes a railway virtual power plant (VPP) concept based on the flexible interconnection technology for different phases in a TPSS
which achieves economic benefits improvement on the premise of meeting the technical indicators for grid-connection. Besides
a carbon emission reduction regulation strategy is put forward and a capacity design model is constructed. Firstly
the primary architecture for the railway VPP is established. For the trading requirements of the carbon market
the railway VPP carbon emission reduction regulation strategy is proposed. Moreover
the railway VPP capacity design approach considering the optimal economic benefits is put forward. Finally
based on the field data and the typical operating conditions
simulation verifications are performed. The results show that
the daily power consumption of the electrified railway in the 3-phase power system is reduced by 10.72%
the regenerative braking recovery rate is 85.2%
the average power factor increases from 0.60 to 0.93
and the electricity bills are decreased by 54.54% during the project period
which verifies the important theoretical and engineering values of the proposed railway VPP.
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