常规线路列车制动节能仿真研究

Su-Gil Lee, Byeong-Song Lee, Jun-Ho Lee, Chan-Bae Park, Jae-hee Kim, Shin-Myung Jung
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引用次数: 6

摘要

随着经济的发展,物流对国民经济的影响也越来越大。然而,汽车运输已经不能满足日益增长的运输需求,其经济效益随着时间的推移而恶化。政府认为,仅靠车辆运输无法满足这样的运输需求,因此计划增加铁路运输。本研究通过对TTX试运行供电电压的监测和分析,识别现有铁路供电电压状况。为了直接测量提供给TTX的电压,在TTX受电弓底部安装PT,用于监测变压器的一次电压,为了准确测量,记录周围环境和条件,并利用CBEMA曲线对串线电压进行分析。因此,湖南线、中央线、太白线等部分线路的额定电压(25千伏)为110[%),供电时间超过200[s],经常超过110[%,太白线的安装电压处于最差状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A study of train braking energy saving simulation for conventional line
The influence of logistics on the national economy increases as the economy advances. Vehicle transportation, however, cannot meet the ever-increasing transportation demand, with its economic efficiency deteriorating over time. Judging that such transportation demand cannot be met only by vehicle transportation, the government also seeks to increase transportation through railroads. In this study, the voltage supplied to TTX in trial operation was monitored and analyzed to identify the voltage condition supplied by the existing railroad. To directly measure the voltage supplied to TTX, PT was installed at the bottom of TTX pantograph for monitoring the primary voltage of the transformer, and for accurate measuring, surrounding environment and conditions were recorded and the analysis of stringing voltage using CBEMA curve was conducted. As a result, some of the section on Honam, Jonngang and Taebaek line were supplied 110[%] pf rated voltage (25[kV]) for more than 200[s] frequently exceeding 110[%] Taebaek line appeared to have had the installed voltage in worst condition.
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