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An investigation of pantograph parameter effects for pantograph-catenary systems

机译:受电弓—类别系统受电弓参数影响的研究

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The pantograph and the catenary perform the current collection process in electrical railway systems. In such systems, the main purpose is to improve the quality of current collection. Many factors and parameters can affect the interaction between the pantograph and the catenary. Internal or external factors affect the dynamic behavior of the system and lead to parameter variations. In practical applications, the system parameters can be changed very quickly. Therefore, the sensitivity of the system corresponding to the parameter variations is very important. In this study, the effects of parameter variations of pantograph on the system were investigated for the pantograph-catenary system. The system response caused by the parameter variations was examined for a constant reference contact force. Simulation studies were performed in Matlab-Simulink. The new transfer function was obtained by keeping the other parameters fixed in each parameter variation. The simulation result obtained by the new transfer function was compared with the simulation result of reference value. A parameter variation impact on the system response was also interpreted by comparing it with other parameter variations. After analyzing the effects of parameters on the system response, modeling can be accomplished by determining the appropriate control techniques. However, instead of setting the controller parameters for each parameter variation, the use of active control techniques would be more appropriate.
机译:受电弓和悬链线在电气铁路系统中执行电流收集过程。在这样的系统中,主要目的是提高电流收集的质量。许多因素和参数可能会影响受电弓和悬链线之间的相互作用。内部或外部因素影响系统的动态行为,并导致参数变化。在实际应用中,可以非常快速地更改系统参数。因此,与参数变化相对应的系统灵敏度非常重要。在这项研究中,研究了受电弓参数系统对受电弓系统的影响。检查由参数变化引起的系统响应,以获得恒定的参考接触力。仿真研究是在Matlab-Simulink中进行的。通过在每个参数变量中保持其他参数不变来获得新的传递函数。将新传递函数获得的仿真结果与参考值的仿真结果进行比较。还通过将参数变化与其他参数变化进行比较来解释参数变化对系统响应的影响。在分析了参数对系统响应的影响之后,可以通过确定适当的控制技术来完成建模。但是,与其为每个参数变量设置控制器参数,不如使用主动控制技术。

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