双边牵引供电系统连续潮流计算方法
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1.西南交通大学电气工程学院,四川 成都 611756;2.中铁二院工程集团有限责任公司,四川 成都 610031

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西藏自治区科技重大专项项目资助(XZ02402ZD0003)


Continuation power flow calculation method for bilateral traction power supply system
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1. School of Electrical Engineering, Southwest Jiaotong University, Chengdu 611756, China; 2. China Railway Eryuan Engineering Group Co., Ltd., Chengdu 610031, China

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    摘要:

    随着双边供电模式的广泛应用,牵引供电系统运行特性日趋复杂,对电压稳定性分析提出了更高要求。传统潮流计算在处理异构负荷结构及多变运行条件时,存在建模处理能力有限、精度与稳定性受制约等问题。因此提出一种适用于双边供电系统的统一建模潮流计算方法。该方法统一了电网侧三相负荷与牵引侧单相负荷的建模框架,克服了牛顿-拉夫逊法难以获取接触网与钢轨侧负荷功率以及连续线性法精度不足且无法动态更新雅可比矩阵的缺陷。在此基础上构建连续潮流扩展模型,系统分析不同供电模式、线路结构及短路容量变化对运行特性的影响。仿真结果表明,该方法能够准确绘制P-V曲线并确定电压稳定性临界点,在模型通用性、计算精度和工程实用性方面具有显著优势。

    Abstract:

    With the widespread adoption of bilateral power supply modes, the operational characteristics of traction power systems have become increasingly complex, posing higher demands on voltage stability analysis. Conventional power flow calculation methods exhibit limitations in modeling heterogeneous load structures and handling varying operating conditions, leading to constrained modeling capability as well as compromised accuracy and robustness. To address these challenges, a unified modeling method for power flow calculation suitable for bilateral supply systems is proposed. This approach integrates the modeling frameworks of three-phase grid-side loads and single-phase traction-side loads, thereby overcoming the difficulties of the Newton-Raphson method in obtaining load power on the catenary and rail sides, as well as the limitations of the continuous linear method in terms of insufficient accuracy and inability to dynamically update the Jacobian matrix. On this basis, an extended continuation power flow model is developed to systematically analyze the impact of different supply modes, line structures, and short-circuit capacities on system operational characteristics. Simulation results demonstrate that the proposed method accurately generates P-V curves and identifies critical voltage stability points, offering significant advantages in model universality, computational accuracy, and engineering applicability.

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徐立特,张 乔,刘志刚,等.双边牵引供电系统连续潮流计算方法[J].电力系统保护与控制,2026,54(05):131-143.[XU Lite, ZHANG Qiao, LIU Zhigang, et al. Continuation power flow calculation method for bilateral traction power supply system[J]. Power System Protection and Control,2026,V54(05):131-143]

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  • 收稿日期:2025-04-07
  • 最后修改日期:2025-06-12
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  • 在线发布日期: 2026-03-03
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