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Radiated emissions measurement of entire railway system including rolling stock for Mumbai Monorail project as per EN50121-2: A case study

机译:整个铁路系统的辐射排放量测量,包括孟买单轨项目的滚动库存,如EN50121-2:一个案例研究

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Like any other electronic equipment, the train (referred as rolling stock) used for urban passenger transport also consists of lot of electronics embedded into its system. Hence, it is prone for EMI related problems as encountered by any other electronic equipment. As large number of urban population uses these transport services, they need to be operated taking into consideration all safety precautions inclusive of EMI compliance. The EMI related incidence could create a situation wherein lot of people gets stranded or in worst case scenario put lot of lives in danger. In addition to the routine measurements, the measurements relevant to human physiology (passenger wearing a pacemaker in the heart) also needs to be considered. Many EMI incidences have been reported elsewhere in the world. The product specific standard EN 50121-X series is available for which not only the rolling stock needs to be complied for EMI norms but the whole railway system encompassing Traction Sub Stations (TSS), Auxiliary Sub Stations, Beam switch etc. needs to be considered for measurements. Considering the terrain, other noise sources present around and the nature of EUT (always moving), the radiated emission measurement to be conducted for rolling stock is challenging preposition. Due to a very short time of the rolling stock available in front of the receiving antenna for executing a scan for the entire frequency range, various methodology have to be adopted which includes breaking up the band, taking multiple runs, changing the resolution bandwidth or reducing the scan time. In this paper, we are presenting the methodology and results of the radiation emission measurements conducted for Mumbai Monorail, Phase - I project encompassing rolling stock, Traction Sub Station (TSS), Auxiliary Sub Station (ASS) and Beam Switch Assembly. In addition to taking an ambient scan before every measurement, a separate exercise of noise survey for the duration of 6 to 8 hours at all specified locations where radiated emission measurement was planned was also carried out prior to the actual emission measurements. The noise survey was done as per procedure defined in IEEE 273 standard.
机译:像任何其他电子设备,用于城市客运列车(简称轧材)也是由很多嵌入到其系统中电子的。因此,很容易出现由任何其它电子设备如遇到EMI有关的问题。由于大量城市人口使用这些运输服务,需要对它们进行操作考虑到所有的安全预防措施包容EMI符合的。该EMI相关的发病率可能会造成这样的局面,其中很多人被滞留或最坏的情况下投放大量的生命处于危险之中。除了常规测量,有关人体生理(乘客穿在心脏起搏器)的测量也需要考虑。许多EMI发病率一直在世界其他地方的报道。产品的具体标准EN 50121-X系列可用于其中要遵守的EMI规范但整个铁路系统包围牵引子站(TSS),辅助子站,梁开关等不仅轧制需要需要考虑的用于测量。考虑到地形,其他噪声源周围存在和EUT(总是移动)的性质,以用于机车车辆是具有挑战性的介词进行辐射发射测量。由于在接收天线的前面用于执行扫描的整个频率范围内的可用的轧件的一个非常短的时间,各种方法都可以采用,其包括拆散带,同时多次运行,改变分辨率带宽或减少扫描时间。在本文中,我们提出的方法和孟买单轨列车,第一阶段进行的辐射发射测量的结果 - 我的项目涵盖机车车辆,牵引分站(TSS),辅助子站(ASS)和光束开关总成。除了每次测量前服用的环境扫描,噪声调查的为6至8个小时,在其中辐射发射测定计划所有指定位置的持续时间的独立的运动也被实际发射测量之前进行。噪声调查已完成按照在IEEE 273标准中定义的过程。

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