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Harmonic Resonance Evaluation for Hub Traction Substation Consisting of Multiple High-Speed Railways

机译:多条高速铁路枢纽牵引变电所的谐波谐振评估

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In many hub traction power-supply systems (TPSSs), the 27.5 kV busbars in the traction substation (TSS) have supplied several railway lines in a local area for reducing the number of TSSs. However, the multiple railway lines connected to the busbar may affect the resonance behaviors of the entire system. It is therefore necessary to investigate the resonance behaviors under such hub TPSS conditions since the harmonic current collection of all railway lines will aggravate the resonance problem. Thus, resonance-mode assessment and its sensitivity method is adopted for investigating the resonance behaviors of hub TPSS affected by different numbers of connected lines, lengths of supply lines, system capacities, etc. The numerical results of modal sensitivity indices are compared to investigate and quantify the harmonic resonance issue caused by multiple electrical railway lines. In addition, the resonance frequency-shift technique and modal impedance sensitivity index-based method are also employed to mitigate the critical harmonic resonances. The results illustrate that it is effective to analyze resonance issues by adopting the harmonic model and modal methods in this paper. The two types of resonance behaviors (i.e., primary resonance and resonance band) caused from the hub TPSS have been fully investigated, and the resulting harmonic distortion of hub TPSS is suppressed.
机译:在许多枢纽牵引供电系统(TPSS)中,牵引变电站(TSS)中的27.5 kV母线为局部区域提供了多条铁路线,以减少TSS的数量。但是,连接到母线的多条铁路线可能会影响整个系统的共振行为。因此,有必要研究这种枢纽TPSS条件下的谐振行为,因为所有铁路线的谐波电流收集都会加剧谐振问题。因此,采用共振模式评估及其灵敏度方法来研究轮毂TPSS受不同数量的连接线,供应线长度,系统容量等影响的共振行为。比较了模式灵敏度指标的数值结果以进行调查和研究。量化由多条电气铁路线引起的谐波谐振问题。此外,还采用了共振移频技术和基于模态阻抗灵敏度指数的方法来缓解临界谐波共振。结果表明,采用谐波模型和模态方法分析共振问题是有效的。已经充分研究了由轮毂TPSS引起的两种类型的谐振行为(即,初级谐振和谐振带),并且抑制了所产生的轮毂TPSS的谐波失真。

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