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Preliminary field testing of a servoactuated pantograph

机译:伺服电压仪的初步现场测试

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摘要

One of the main problems concerning high speed running on Italian railways is the current pick up. The contact force between the pantograph and the overhead contact line increases its amplitude and frequency as the speed increases. The frequent detachments generated by this situation cause not only the temporary interruption of power transmission and wire and contact shoe erosion and produce electromagnetic pollution. A frequent method to reduce detachments is based on the progressive increase of uplift force with the increasing speed. This solution can't be used in high speed running as the excessive contact force necessary to avoid detachments causes a very quick erosion of contact shoes. Furthermore, operating in the above mentioned conditon, the amplitude of contact shoe oscillations may cause impact with the suspension devices of overhead line. An alternative approach to solve these problems is the use of a servo actuated pantograph able to maintain the contact force at a given value. In order to obtain the above mentioned result a FS pantograph was modified applying a brushless servomotor connected by a wire to the contact strip. This actuator, adding its force to the effect of the traditional air bellow, is able to properly regulate the contact force. In the paper the preliminary experimental results, obtained by a special test rig in a FS laboratory, are reported and discussed.
机译:关于意大利铁路高速运行的主要问题之一是当前的拾取。由于速度的增加,受电弓和顶部接触线之间的接触力增加了其幅度和频率。这种情况产生的频繁的脱离不仅会导致动力传动和电线的暂时中断以及接触鞋侵蚀并产生电磁污染。减少分离的频繁方法是基于升级力的逐渐增加,速度增加。由于避免脱离所需的过度接触力导致接触鞋的过度接触力,这种解决方案不能以高速运行使用。此外,在上述条件下操作,接触鞋振荡的幅度可能与架空线的悬架装置产生冲击。解决这些问题的替代方法是使用能够在给定值处保持接触力的伺服致动的电压仪。为了获得上述结果,修改了FS Pantograph将通过电线连接到接触条的无刷伺服电机。这个执行器,将其力量增加到传统空气波纹管的效果,能够适当地调节接触力。据报道并讨论了由FS实验室的特殊试验台获得的初步实验结果。

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