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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Optimization and Control on High Frequency Resonance of Train-Network Coupling Systems
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Optimization and Control on High Frequency Resonance of Train-Network Coupling Systems

机译:火车网络耦合系统高频共振优化与控制

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With the wide application of the electrified railway, high frequency resonances in train-network coupling system often occur, which not only affect the normal operation of trains but also seriously restrict the rapid development of electrified railway. However, the resonance mechanism has not been fully grasped and needs to be solved. First of all, this paper analyzed the new harmonic characteristics of mixed running of alternating current (AC) and direct current (DC) trains in electrified railway. Then, the mechanism of high frequency resonance and the burnout failure reason of the resistor connected with capacitance (RC) branch in the dc train were analyzed. Simulations were carried out to find some basic conclusions and rules. Subsequently, this paper reproduced and analyzed a real case of high frequency resonance accidents of train-network, burnout accident of RC branch of the dc train. Based on the above researches, optimized control methods to avoid the high frequency resonance were introduced. The achievement of this paper provides an important reference and theoretical basis for the comprehensive optimization and control of train-network coupling systems and the resonance suppression measures.
机译:随着电气化铁路的广泛应用,经常发生火车网络耦合系统中的高频共振,这不仅影响火车的正常运行,而且严重限制了电气化铁路的快速发展。然而,谐振机制尚未完全掌握并且需要解决。首先,本文分析了电气化铁路中交流电流(AC)和直流(DC)列车混合运行的新谐波特性。然后,分析了高频谐振的机制和与DC系列中的电容(RC)分支连接的电阻器的电阻器的烧坏故障原因进行了分析。进行了模拟,以查找一些基本结论和规则。随后,本文复制和分析了RC火车RC分支的火车网络高频共振事故的实际情况。基于上述研究,介绍了避免高频谐振的优化控制方法。本文的成就为列车网耦合系统的综合优化和控制提供了重要的参考和理论依据和谐振抑制措施。

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