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Traction power systems for electrified railways:evolution,state of the art,and future trends
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作者 Haitao Hu Yunjiang Liu +4 位作者 Yong Li Zhengyou He Shibin Gao Xiaojuan Zhu Haidong Tao 《Railway Engineering Science》 EI 2024年第1期1-19,共19页
Traction power systems(TPSs)play a vital role in the operation of electrified railways.The transformation of conventional railway TPSs to novel structures is not only a trend to promote the development of electrified ... Traction power systems(TPSs)play a vital role in the operation of electrified railways.The transformation of conventional railway TPSs to novel structures is not only a trend to promote the development of electrified railways toward high-efficiency and resilience but also an inevitable requirement to achieve carbon neutrality target.On the basis of sorting out the power supply structures of conventional AC and DC modes,this paper first reviews the characteristics of the existing TPSs,such as weak power supply flexibility and low-energy efficiency.Furthermore,the power supply structures of various TPSs for future electrified railways are described in detail,which satisfy longer distance,low-carbon,high-efficiency,high-reliability and high-quality power supply requirements.Meanwhile,the application prospects of different traction modes are discussed from both technical and economic aspects.Eventually,this paper introduces the research progress of mixed-system electrified railways and traction power supply technologies without catenary system,speculates on the future development trends and challenges of TPSs and predicts that TPSs will be based on the continuous power supply mode,employing power electronic equipment and intelligent information technology to construct a railway comprehensive energy system with renewable energy. 展开更多
关键词 Railway traction power system Future electrified railway Flexible continuous power supply Renewable energy Integrated energy system
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Scheme of long distance power supply for electrified railway traction network based on traction cable 被引量:1
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作者 Hui Wang Qunzhan Li +2 位作者 Wei Liu Chuang Wang Tongtong Liu 《Railway Sciences》 2022年第1期114-130,共17页
Purpose–The traction cable is paralleled with the existing traction network of electrified railway through transverse connecting line to form the scheme of long distance power supply for the traction network.This pap... Purpose–The traction cable is paralleled with the existing traction network of electrified railway through transverse connecting line to form the scheme of long distance power supply for the traction network.This paper aims to study the scheme composition and power supply distance(PSD)of the scheme.Design/methodology/approach–Based on the structure of parallel traction network(referred to as“cable traction network(CTN)”),the power supply modes(PSMs)are divided into cableþdirect PSM and cableþautotransformer(AT)PSM(including Japanese mode,French mode and new mode).Taking cableþJapanese AT PSM as an example,the scheme of long distance power supply for CTN under the PSMs of co-phase and out-of-phase power supply are designed.On the basis of establishing the equivalent circuit model and the chain circuit model of CTN,taking the train working voltage as the constraint condition,and based on the power flow calculation of multiple train loads,the calculation formula and process for determining the PSD of CTN are given.The impedance and PSD of CTN under the cableþAT PSM are simulated and analyzed,and a certain line is taken as an example to compare the scheme design.Findings–Results show that the equivalent impedance of CTN under the cableþAT PSM is smaller,and the PSD is about 2.5 times of that under the AT PSM,which can effectively increase the PSD and the flexibility of external power supply location.Originality/value–The research content can effectively improve the PSD of traction power supply system and has important reference value for the engineering application of the scheme. 展开更多
关键词 traction cable Electrified railway traction network Long distance power supply Voltage drop power flow calculation
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New generation traction power supply system and its key technologies for electrified railways 被引量:6
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作者 Qunzhan Li 《Journal of Modern Transportation》 2015年第1期1-11,共11页
Unlike the traditional traction power supply system which enables the electrified railway traction substation to be connected to power grid in a way of phase rotation, a new generation traction power supply system wit... Unlike the traditional traction power supply system which enables the electrified railway traction substation to be connected to power grid in a way of phase rotation, a new generation traction power supply system without phase splits is proposed in this paper. Three key techniques used in this system have been discussed. First, a combined co-phase traction power supply system is applied at traction substations for compensating negative sequence current and eliminating phase splits at exits of substations;design method and procedure for this system are presented.Second, a new bilateral traction power supply technology is proposed to eliminate the phase split at section post and reduce the influence of equalizing current on the power grid.Meanwhile, power factor should be adjusted to ensure a proper voltage level of the traction network. Third, a segmental power supply technology of traction network is used to divide the power supply arms into several segments, and the synchronous measurement and control technology is applied to diagnose faults and their locations quickly and accurately. Thus, the fault impact can be limited to a minimum degree. In addition, the economy and reliability of the new generation traction power supply system are analyzed. 展开更多
关键词 牵引供电系统 电气化铁路 供电技术 相位旋转 牵引网络 诊断故障 牵引变电所 负序电流
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Power management in co-phase traction power supply system with super capacitor energy storage for electrified railways 被引量:4
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作者 Xiaohong Huang Qinyu Liao +2 位作者 Qunzhan Li Sida Tang Ke Sun 《Railway Engineering Science》 2020年第1期85-96,共12页
Increasing railway traffic and energy utilization issues prompt electrified railway systems to be more economical,efficient and sustainable.As regenerative braking energy in railway systems has huge potential for opti... Increasing railway traffic and energy utilization issues prompt electrified railway systems to be more economical,efficient and sustainable.As regenerative braking energy in railway systems has huge potential for optimized utilization,a lot of research has been focusing on how to use the energy efficiently and gain sustainable benefits.The energy storage system is an alternative because it not only deals with regenerative braking energy but also smooths drastic fluctuation of load power profile and optimizes energy management.In this work,we propose a co-phase traction power supply system with super capacitor(CSS_SC)for the purpose of realizing the function of energy management and power quality management in electrified railways.Besides,the coordinated control strategy is presented to match four working modes,including traction,regenerative braking,peak shaving and valley filling.A corresponding simulation model is built in MATLAB/Simulink to verify the feasibility of the proposed system under dynamic working conditions.The results demonstrate that CSS_SC is flexible to deal with four different working conditions and can realize energy saving within the allowable voltage unbalance of 0.008%in simulation in contrast to 1.3%of the standard limit.With such a control strategy,the performance of super capacitor is controlled to comply with efficiency and safety constraints.Finally,a case study demonstrates the improvement in power fluctuation with the valley-to-peak ratio reduced by 20.3%and the daily load factor increased by 17.9%. 展开更多
关键词 Electrified railway Co-phase traction power supply system Energy storage Peak SHAVING VALLEY filling power quality Super CAPACITOR
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Industrial frequency single-phase AC traction power supply system for urban rail transit and its key technologies 被引量:1
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作者 Qunzhan Li 《Journal of Modern Transportation》 2016年第2期103-113,共11页
To avoid stray current and maintain the benefit of no phase-split in the DC traction power supply system,an AC traction power supply system was proposed for the urban public transport such as metro and light rail tran... To avoid stray current and maintain the benefit of no phase-split in the DC traction power supply system,an AC traction power supply system was proposed for the urban public transport such as metro and light rail transit.The proposed system consists of a main substation(MSS)and cable traction network(CTN). The MSS includes a single-phase main traction transformer and a negative-sequence compensation device, while the CTN includes double-core cables, traction transformers, overhead catenary system, rails, etc. Several key techniques for the proposed system were put forward and discussed, which can be summarized as(1) the power supply principle,equivalent circuit and transmission ability of the CTN, the cable-catenary matching technique, and the selection of catenary voltage level;(2) the segmentation technology and status identification method for traction power supply network, distributed and centralized protection schemes,etc.;(3) a power supply scheme for single-line MSS and a power supply scheme of MSS shared by two or more lines.The proposed industrial frequency single-phase AC traction power supply system shows an excellent technical performance, good economy, and high reliability, hence provides a new alternative for metro and urban rail transit power supply systems. 展开更多
关键词 直流牵引供电系统 城市轨道交通 单相交流 匹配技术 接触网系统 工频 城市公共交通 牵引主变压器
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A preventive opportunistic maintenance method for railway traction power supply system based on equipment reliability 被引量:1
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作者 Sheng Lin Nan Li +4 位作者 Ding Feng Xiaomin Guo Weiguo Pan Jun Wang Chao Yang 《Railway Engineering Science》 2020年第2期199-211,共13页
Conventional maintenance mode for the traction power supply system(TPSS)is to perform scheduled regular maintenance activities for power supply equipment,while such maintenance mode may result in undue maintenance tas... Conventional maintenance mode for the traction power supply system(TPSS)is to perform scheduled regular maintenance activities for power supply equipment,while such maintenance mode may result in undue maintenance tasks and low efficiency due to different degradation processes of different sorts of equipment.To address this problem,this paper introduces a preventive opportunistic maintenance(POM)method for TPSS based on equipment reliability.Firstly,a POM model is established by considering the equipment reliability degradation process based on Weibull distribution.Then,by considering the total power outage time in the planned operation cycle of TPSS as the optimization objective,the optimal maintenance scheme of TPSS is formulated by iterative method of maintenance strategies.The proposed method is verified by introducing practical maintenance strategies and fault record data of the traction transformer,circuit breaker and disconnector in an actual TPSS of a railway administration.Results show that the presented method can make full use of the existing fault data to develop a POM scheme for TPSS.It can improve maintenance efficiency and reduce power outage time,providing guidance to formulate scientific maintenance strategies for TPSS. 展开更多
关键词 Electrified railway Opportunistic maintenance interval Preventive opportunistic maintenance RELIABILITY traction power supply system Weibull distribution
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Design and manufacture of a 100 kA coaxial pulsed power cable for plasma generator and PPS in ETC guns 被引量:1
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作者 Yong Jin Zhen-xiao Li +4 位作者 Yan-jie Ni Xiao-ya Gao Gang Wan Chun-xia Yang Bao-ming Li 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2019年第5期698-702,共5页
Based on our previous pulsed current and internal overvoltage test data and the experience of common commercial high power cables,a 100 kA coaxial pulsed power cable is designed and manufactured to adapt the coaxial e... Based on our previous pulsed current and internal overvoltage test data and the experience of common commercial high power cables,a 100 kA coaxial pulsed power cable is designed and manufactured to adapt the coaxial electric energy breech transmission between the plasma generator and the pulsed power supply(PPS) in electrothermal-chemical(ETC) guns.The index parameters are analyzed and determined.Semi-conductor layers and a shield stiffener are introduced to prevent the deformation and burst of the pulsed power cable structurally.The semi-conductor layer can eliminate the air gap and balance the electric field in the cable.The shield stiffener can multiply the mechanical strength to restrain the strong electrodynamic force produced by the core dislocation of the outer conductor.The multi-coupling of electromagnetic field,stress field and thermal field analysis are established to assist in aided design of electrical strength,mechanical strength and temperature rise characteristics.Both a DC voltage withstand test and pulsed discharge tests are introduced to verify and inspect the performance and dynamic response of the pulsed power cable.The 25 kV/5 min DC voltage withstand test result shows that the sample leakage current is nearly 3 μA and no abnormal phenomena of the pulsed power cable sample occurred.The pulsed discharge tests show that the sample can sustain the 100 kA peak current.Furthermore,this 100 kA coaxial pulsed power cable can satisfy the ETC test requirements. 展开更多
关键词 PULSED power cable PULSED power supply Electrothermal-chemical LAUNCH COAXIAL structure
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The Analysis of Bilateral Power Supply for AC Electrified Railway
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作者 Zhengqing Han Zhen Fang +1 位作者 Changqing Li Dong Li 《Energy and Power Engineering》 2013年第4期483-487,共5页
In China, the unilateral power supply has been used in AC electrified railway, which depends on the management mode of power system. For better economic and technical indexes, all-parallel AT traction system is widely... In China, the unilateral power supply has been used in AC electrified railway, which depends on the management mode of power system. For better economic and technical indexes, all-parallel AT traction system is widely used in passenger dedicated line. In this paper, the equivalent circuit model of unilateral power supply and bilateral power supply is investigated, and based on this model, the difference between unilateral power supply impedance and bilateral power supply impedance is discussed. 展开更多
关键词 All-parallel AT traction SYSTEM BILATERAL power supply SYSTEM ANALYSIS UNILATERAL power supply
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新型混合式贯通牵引供电系统及其复合控制策略
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作者 王鑫 郭祺 +2 位作者 涂春鸣 肖凡 侯玉超 《中国电机工程学报》 EI CSCD 北大核心 2024年第3期981-991,I0011,共12页
电分相与负序等电能质量问题是制约电气化铁路向高速化、重载化发展的桎梏。贯通牵引供电系统为消弭上述问题提供了契机,但既有贯通方案依然存在所需器件数目多、改造成本高、可靠性差等弊端。为此,在充分利用既有牵引变压器基础上,该... 电分相与负序等电能质量问题是制约电气化铁路向高速化、重载化发展的桎梏。贯通牵引供电系统为消弭上述问题提供了契机,但既有贯通方案依然存在所需器件数目多、改造成本高、可靠性差等弊端。为此,在充分利用既有牵引变压器基础上,该文设计一种新型混合式贯通牵引供电装置。该装置通过共直流侧与功率均分手段有效抵消输入侧纹波功率,降低有源/无源器件数目与电容容量。同时,针对直流侧二次纹波与负荷功率冲击,提出一种输入端口复合控制策略,有效解决纹波传递与冲击波动问题。最后通过仿真与实验验证所提装置及其控制策略的可行性与可靠性。 展开更多
关键词 新型混合式 牵引供电装置 公共直流母线 复合控制
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基于RPC的光储接入牵引供电系统协调控制方法
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作者 陈维荣 王小雨 +4 位作者 韩莹 臧治 李奇 沈文杰 许程鹏 《西南交通大学学报》 EI CSCD 北大核心 2024年第1期1-10,共10页
为将光伏发电接入牵引供电系统进行有效利用,同时兼顾牵引供电系统电能质量改善及列车再生制动能量回收利用,提出了一种基于铁路功率调节器的光储系统接入牵引供电系统的协调控制方法.首先,搭建基于铁路功率调节器的光储系统接入牵引供... 为将光伏发电接入牵引供电系统进行有效利用,同时兼顾牵引供电系统电能质量改善及列车再生制动能量回收利用,提出了一种基于铁路功率调节器的光储系统接入牵引供电系统的协调控制方法.首先,搭建基于铁路功率调节器的光储系统接入牵引供电拓扑结构,并对其电能质量补偿机理进行理论分析;在此基础上,充分考虑光储系统的运行条件以及列车牵引、制动、空载或惰行工况,提出光储系统接入牵引供电的联合协调控制方法,实现了“光+储+荷”三者间的协调控制、牵引供电系统负序的动态补偿以及谐波的有效抑制;在RT-Lab实时仿真系统中建立了基于铁路功率调节器的光伏接入牵引供电系统仿真模型,并结合实际光照和牵引工况数据验证本文所提出的系统结构以及协调控制方法的有效性.结果表明:本文所提出的系统结构以及协调控制方法能够实现牵引供电系统中光储系统的有效接入,再生制动能量回收率提升至86.7%,功率因数提升6.4%,对谐波特别是高次谐波含有率有较大改善,满足光伏电能高效消纳及综合利用、电能质量动态综合补偿、再生制动能量回收多重需求. 展开更多
关键词 铁路功率调节器 光储发电系统 牵引供电系统 协调控制方法 电能质量 电能分配
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隧道牵引分区所雷击暂态特性及其二次设备电磁兼容研究
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作者 王继来 王朋成 +1 位作者 张威振 张国钢 《高压电器》 CAS CSCD 北大核心 2024年第1期108-117,共10页
牵引供电系统遭受雷击会在分区所内产生过电压与过电流,对分区所开关柜中二次设备产生瞬态电磁干扰,影响其正常运行。文中针对电气化铁路隧道分区所,建立雷击暂态仿真模型,计算了接触网不同位置遭受雷击时分区所的过电压与过电流,建立了... 牵引供电系统遭受雷击会在分区所内产生过电压与过电流,对分区所开关柜中二次设备产生瞬态电磁干扰,影响其正常运行。文中针对电气化铁路隧道分区所,建立雷击暂态仿真模型,计算了接触网不同位置遭受雷击时分区所的过电压与过电流,建立了27.5 kV开关柜的电磁场有限元仿真模型,分析开关柜中不同区域的瞬态电场、磁场分布。结果表明:雷击接触网会在分区所内产生幅值较大、频率较高的过电压与过电流,在其作用下开关柜低压室瞬态电场可达147.2 V/m、瞬态磁场可达1.3 kA/m,断路器室前壁处瞬态电场可达822.9 kV/m、瞬态磁场可达15.85 kA/m,超过标准规定的幅值,二次设备需要考虑相应的电磁屏蔽措施。论文结果对牵引供电系统雷击过电压/电流防护以及二次设备电磁兼容设计具有参考价值。 展开更多
关键词 隧道牵引供电系统 分区所 雷击暂态特性 开关柜 二次设备 电磁兼容
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计及光伏和储能接入的牵引供电系统能量管理策略
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作者 高锋阳 宋志翔 +2 位作者 高建宁 高翾宇 杨凯文 《电工技术学报》 EI CSCD 北大核心 2024年第3期745-757,共13页
近年来,为实现电气化铁路“双碳”目标,多项铁路用能优化举措投入实施并取得一定成效,然而,单靠能耗优化治标不治本。为根治电气化铁路碳排放问题,在保证系统稳定运行的基础上,基于智能电网理念,提出计及光伏和储能接入的牵引供电系统... 近年来,为实现电气化铁路“双碳”目标,多项铁路用能优化举措投入实施并取得一定成效,然而,单靠能耗优化治标不治本。为根治电气化铁路碳排放问题,在保证系统稳定运行的基础上,基于智能电网理念,提出计及光伏和储能接入的牵引供电系统能量管理策略。首先,构建计及光伏和储能接入的牵引供电系统;然后,基于电力市场电价及新能源出力,采用日前联合调控、日内滚动调节和实时优化控制铁路用能,并通过分层分级优化,打破各“源”端相对独立、各自为政的壁垒,实现多能互补;最后,通过共享储能模式,降低储能装置闲置率并提高新能源利用率。仿真结果表明,该能量管理策略可在保障系统运行稳定和安全的基础上有效地降低系统的运行成本,同时保持良好的电能质量。 展开更多
关键词 电气化铁路 牵引供电系统 共享储能 电力市场
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上海轨道交通崇明线牵引供电制式方案研究
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作者 王小峰 《城市轨道交通研究》 北大核心 2024年第1期94-99,共6页
[目的]为了解决传统采用钢轨回流的直流牵引供电系统存在杂散电流腐蚀、直流供电距离受限等问题。[方法]对国内外主要城市轨道交通AC 25 kV/50 Hz牵引供电制式和直流牵引供电制式的应用情况、技术特点、适用性等指标进行对比分析后,结... [目的]为了解决传统采用钢轨回流的直流牵引供电系统存在杂散电流腐蚀、直流供电距离受限等问题。[方法]对国内外主要城市轨道交通AC 25 kV/50 Hz牵引供电制式和直流牵引供电制式的应用情况、技术特点、适用性等指标进行对比分析后,结合上海轨道交通崇明线工程的特殊性,提出采用DC 1500 V架空接触网+负极专用回流轨的牵引供电方式;针对在越江段隧道内是否设置牵引变电所设计了两种供电方案,仿真计算了两种方案下供电系统供电能力达到24对/h时牵引网最低电压、整流机组功率和牵引变电所有效电流等指标,并进行了比较分析。[结果及结论]采用负极专用回流轨的直流牵引供电制式可从根本上杜绝杂散电流的产生及其对周边管线的腐蚀;在长距离越江区段设置牵引变电所方案与牵引直流设备“双套配置”方案相比,前者的供电可靠性和供电能力更具优势。 展开更多
关键词 上海轨道交通 崇明线 牵引供电制式 专用回流轨
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基于馈线和电流的专用轨回流牵引供电系统接地故障保护
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作者 刘永生 侯炜 +3 位作者 王旭 冯志翔 齐国强 石祥建 《电气化铁道》 2024年第2期53-56,共4页
对于专用轨回流牵引供电系统,负极回流轨对地具有良好的绝缘特性,极大地限制了正极接地故障所产生的短路电流。由于负极母线电位下降、接地电阻较大等原因,现有的正极接地保护在实际应用中暴露出选择性差、灵敏度低等问题。本文通过对... 对于专用轨回流牵引供电系统,负极回流轨对地具有良好的绝缘特性,极大地限制了正极接地故障所产生的短路电流。由于负极母线电位下降、接地电阻较大等原因,现有的正极接地保护在实际应用中暴露出选择性差、灵敏度低等问题。本文通过对专用轨回流牵引供电系统短路电流以及负荷电流的潮流分析,提出以供电区间馈线和电流作为正极接地故障判断的特征量,并设计基于该故障特征量的保护方案,基于MATLAB/Simulink仿真系统,验证了该保护方案的有效性。 展开更多
关键词 专用轨回流牵引供电系统 负母线接地回路 馈线和电流 MATLAB/SIMULINK
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基于多导体回路法的AT供电方式长回路电容计算方法研究
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作者 邓云川 鲁小兵 《电气化铁道》 2024年第1期35-44,50,共11页
提出了一种基于多导体回路法以接触网和正馈线为传输导体的电气化铁路AT供电方式牵引网长回路电容计算方法。该方法以与电荷唯一对应的回路为基本单元,对复杂多导体传输线系统开展电场描述,实现了AT供电方式牵引网长回路电容的精确计算。
关键词 多导体回路法 牵引网电容 AT供电方式 长回路
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基于储能的非电气化铁路新型牵引供电系统架构及关键技术
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作者 陈冲 贾利民 +3 位作者 赵天宇 王得勇 吴命利 蔡明 《中国铁道科学》 EI CAS CSCD 北大核心 2024年第1期162-177,共16页
为解决非电气化铁路采用110 kV/220 kV强网传统方案构建电气化铁路牵引供电系统难度大、成本高的问题,提出一种基于储能的以风、光等新能源为主体的新型牵引供电系统。分别从储能技术类别、工作原理、数学模型和典型应用等方面对新型牵... 为解决非电气化铁路采用110 kV/220 kV强网传统方案构建电气化铁路牵引供电系统难度大、成本高的问题,提出一种基于储能的以风、光等新能源为主体的新型牵引供电系统。分别从储能技术类别、工作原理、数学模型和典型应用等方面对新型牵引供电系统进行总结,阐明适配新型牵引供电系统的储能技术属性,阐述新型牵引供电系统内涵、特征和形态,并建立新型牵引供电系统的电气拓扑、测控平台、监控网络和管控逻辑架构;面向新型牵引供电系统源-荷随机强波动特征,从整体视角论述组分相互作用机理、系统稳定运行机制、能量流均衡机制和系统效能涌现机理,以及规划与优化配置、电能高效变换、能量自洽调度、效能评估和性能保持等关键技术。结果表明:建立基于储能的非电气化铁路新型牵引供电系统,可实现非电气化铁路的绿色低碳、弹性自洽、经济高效的电气化升级;为后续开展“理论研究-仿真验证-试验验证-评估优化”循环迭代的闭环研究提供参考借鉴。 展开更多
关键词 新型牵引供电系统 储能技术 新能源 非电气化铁路 绿色弹性
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广州地铁22号线交流牵引供电系统电磁干扰问题分析
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作者 赵云云 桑国阳 +3 位作者 龙意仁 李鲲鹏 叶俊 曹晓斌 《城市轨道交通研究》 北大核心 2024年第2期124-129,共6页
[目的]当地铁线路正常运行时,由于钢轨对地不能做到完全绝缘,采用交流牵引供电系统的地铁会对邻近金属油气管道产生交流干扰。因此,有必要研究地铁交流牵引供电系统对外部电磁干扰的问题。[方法]以广州某金属油气管道与广州地铁22号线... [目的]当地铁线路正常运行时,由于钢轨对地不能做到完全绝缘,采用交流牵引供电系统的地铁会对邻近金属油气管道产生交流干扰。因此,有必要研究地铁交流牵引供电系统对外部电磁干扰的问题。[方法]以广州某金属油气管道与广州地铁22号线并行段为例,建立地铁隧道与金属油气管道耦合模型,对金属油气管道进行电磁干扰仿真分析;计算了与隧道呈不同夹角的油气管道各段的电磁感应电压、地电位和涂层耐受电压,分析了电磁干扰的主要影响因素。[结果及结论]交流牵引供电制式下,管道涂层实际承受电压为涂层内部金属管道表面的电压和外部土壤中的地电位的差值,地铁隧道在金属管道表面产生的感应电压幅值是土壤地电位幅值的10倍以上,金属油气管道受到的电磁干扰以管道与地铁的电磁感应电压为主;金属油气管道及地铁隧道并行段是产生电磁干扰的主要区段;增加回流线可以极大地降低金属油气管道的电磁感应电压,回流线的位置与数量对减少电磁干扰效果有极大的影响。 展开更多
关键词 地铁 交流牵引供电系统 电磁干扰
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光储接入牵引供电系统应急供电方案下低频稳定性研究
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作者 王英 辛月阳 +2 位作者 谢子昀 母秀清 陈小强 《铁道科学与工程学报》 EI CAS CSCD 北大核心 2024年第3期1189-1201,共13页
“双碳”目标背景下,新能源较大规模接入牵引网可能成为铁路运输新趋势。为对意外失电的列车紧急牵引并打破铁路领域传统用能壁垒,实现铁路能源自给型低碳供电并与电网互为备用,各系统能量互联互通,首次提出一种应急供电方案灵活利用牵... “双碳”目标背景下,新能源较大规模接入牵引网可能成为铁路运输新趋势。为对意外失电的列车紧急牵引并打破铁路领域传统用能壁垒,实现铁路能源自给型低碳供电并与电网互为备用,各系统能量互联互通,首次提出一种应急供电方案灵活利用牵引网侧接入的光储装置牵引列车并对“光-储-车网”耦合系统的低频稳定性展开研究。首先,制定RPC双模式单相全桥逆变器的控制方法结合光储运行状态协调控制策略划分工作模态;然后,利用小信号及状态空间平均法建立光储、客车(CRH3型动车)以及投影到dq坐标系下铁路功率调节器直流侧阻抗模型;最后,利用所得“光-储-车网”3个子系统的导纳模型,引入一种适应多工况的无源判据,揭示控制器参数及多源对牵引供电系统电气稳定性的影响规律。研究结果表明:所提方案通过新能源及储能装置在昼夜多工况下均能长时持续稳定牵引列车,当新能源或电网供电出现意外二者可互补切换,故障条件下机车仍可受电稳定行走。此外,光储电压环比例增益对该系统阻抗匹配性稳定性有较强的电气敏感性,所建模型结合无源判据指导调参接入不同供电源补偿系统阻抗可治理部分失稳现象,该方案下储能系统具有良好的补偿特性。在Starsim半实物实验平台验证了“光-储-车网”耦合系统应急供电方案的可行性及稳定性研究的正确性。 展开更多
关键词 新能源牵引 应急供电 “光-储-车网”耦合系统 铁路功率调节器 小信号模型 无源判据 Starsim
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含分布式光伏接入的三相牵引供电系统电压协调控制方法
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作者 王翰林 黄小红 +3 位作者 李昊洋 彭友 任桃 李群湛 《高电压技术》 EI CAS CSCD 北大核心 2024年第4期1645-1654,共10页
牵引供电系统中光伏并网逆变器普遍处于弱可控状态且缺乏多机间协调配合,为了使分布式光伏在实现牵引能耗优化的同时,主动参与牵引网电压调控,提出了用于三相牵引供电系统的电压协调控制策略。针对含光伏的新型三相牵引供电系统拓扑,分... 牵引供电系统中光伏并网逆变器普遍处于弱可控状态且缺乏多机间协调配合,为了使分布式光伏在实现牵引能耗优化的同时,主动参与牵引网电压调控,提出了用于三相牵引供电系统的电压协调控制策略。针对含光伏的新型三相牵引供电系统拓扑,分析了系统电压-有功和无功定量关系。结合分布式光伏无功裕度及协调关系,设计了3阶段分布式电压协调控制策略,根据电压灵敏度判定各节点补偿与削减优先度,实现了分布式光伏无功协调补偿及有功优化削减,达到牵引网电压主动控制。最后,通过对系统多工况下仿真,验证策略有效性。仿真结果表明,所提协调控制策略在三相牵引供电系统复杂的运行工况下,能够在兼顾光伏能量利用率的同时,增强系统电压调控能力,解决牵引网电压越限问题,并有效降低牵引网损耗。研究通过有效利用光伏支撑牵引网电压,为机车的安全、高效运行提供保障。 展开更多
关键词 三相牵引供电系统 分布式光伏 电压灵敏度 电压协调控制 光伏逆变器 电压越限
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基于多电平滞环电流控制的牵引供电系统可控宽频带阻抗测量技术
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作者 陈司懿 胡海涛 +2 位作者 肖冬华 潘鹏宇 宋依桐 《电工技术学报》 EI CSCD 北大核心 2024年第9期2771-2783,共13页
精确获取牵引供电系统的宽频带阻抗特性,是分析车-网耦合系统的宽频带振荡问题的关键途径,对保障电气化铁路的安全稳定运行具有重要意义。目前的阻抗测量技术大多难以兼顾大功率与频带可控的测量要求,因此,该文提出一种基于多电平滞环... 精确获取牵引供电系统的宽频带阻抗特性,是分析车-网耦合系统的宽频带振荡问题的关键途径,对保障电气化铁路的安全稳定运行具有重要意义。目前的阻抗测量技术大多难以兼顾大功率与频带可控的测量要求,因此,该文提出一种基于多电平滞环电流控制的牵引供电系统可控宽频带阻抗测量技术,测量频带为10 Hz~5 kHz,可通过一次谐波扰动注入快速获取目标频带的系统阻抗,相比于传统的滞环电流控制方法,具有更低的开关频率,并且能有效避免死区效应,改善输出电流的波形,更适用于宽频信号的跟踪控制。最后,通过仿真和硬件在环实验验证了该测量技术的有效性。 展开更多
关键词 牵引供电系统 阻抗测量技术 多电平滞环电流控制 谐波扰动
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