杨凯, 胡海涛, 陈俊宇, 王科, 郭旭刚, 谷雨涵, 赵朝蓬, 高仕斌, 何正友. 电气化铁路再生制动能量利用系统保护方案研究[J]. 中国电机工程学报, 2023, 43(24): 9523-9534. DOI: 10.13334/j.0258-8013.pcsee.220783
引用本文: 杨凯, 胡海涛, 陈俊宇, 王科, 郭旭刚, 谷雨涵, 赵朝蓬, 高仕斌, 何正友. 电气化铁路再生制动能量利用系统保护方案研究[J]. 中国电机工程学报, 2023, 43(24): 9523-9534. DOI: 10.13334/j.0258-8013.pcsee.220783
YANG Kai, HU Haitao, CHEN Junyu, WANG Ke, GUO Xugang, GU Yuhan, ZHAO Chaopeng, GAO Shibin, HE Zhengyou. Research on Protection Scheme of Regenerative Braking Energy Utilization System of Electrified Railway[J]. Proceedings of the CSEE, 2023, 43(24): 9523-9534. DOI: 10.13334/j.0258-8013.pcsee.220783
Citation: YANG Kai, HU Haitao, CHEN Junyu, WANG Ke, GUO Xugang, GU Yuhan, ZHAO Chaopeng, GAO Shibin, HE Zhengyou. Research on Protection Scheme of Regenerative Braking Energy Utilization System of Electrified Railway[J]. Proceedings of the CSEE, 2023, 43(24): 9523-9534. DOI: 10.13334/j.0258-8013.pcsee.220783

电气化铁路再生制动能量利用系统保护方案研究

Research on Protection Scheme of Regenerative Braking Energy Utilization System of Electrified Railway

  • 摘要: 再生制动能量利用系统在实现电气化铁路再生能量回收利用、节能减碳中发挥着重要作用。然而,基于潮流控制技术的再生制动能量利用系统将改变牵引供电系统原始功率潮流,其故障保护对保障电气化铁路的运行安全至关重要。为此,该文针对电气化铁路再生制动利用系统的故障保护方案开展研究。首先,根据再生制动能量利用系统的运行原理分析系统接入对牵引供电系统既有保护的影响。然后,结合影响分析结果提出基于“故障导向安全”原则的再生制动能量利用系统保护方案。该方案对不同类型系统故障制定分级保护策略,在此基础上通过系统自保护与牵引供电系统既有保护的协同配合保障再生制动能量利用系统的运行安全。最后,选取牵引变电所和分区所2种典型应用案例对所提保护方案进行验证。结果表明,所提保护方案能够实现再生制动能量利用系统在不同应用案例中的有效保护,保障了再生制动能量的安全利用。

     

    Abstract: Regenerative braking energy utilization system plays an important role in the recovery and utilization of renewable energy, energy saving and carbon reduction of electrified railway. However, the regenerative braking energy utilization system based on power flow control technology will change the original power flow of traction power supply system, and its fault protection is very important to ensure the safety of electrified railway operation. Therefore, this paper studies the fault protection scheme of regenerative braking utilization system of electrified railway. Firstly, according to the operation principle of regenerative braking energy utilization system, the influence of system access on the existing protection of traction power supply system is analyzed. Then, combined with the impact analysis results, a protection scheme of regenerative braking energy utilization system based on the principle of "fault-oriented safety" is proposed. In this scheme, the graded protection strategy is formulated for different types of system faults. On this basis, the operation safety of regenerative braking energy utilization system is guaranteed through the coordination of system self-protection and existing protection of traction power supply system. Finally, two typical application cases of traction substation and section post are selected to verify the proposed protection scheme. The results show that the proposed protection scheme can effectively protect the regenerative braking energy utilization system in different application cases and ensure the safe utilization of regenerative braking energy..

     

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